The enzyme which proofreads the bases during replication is DNA polymerase. The enzyme has a 5'-3' proofreading activity where it checks if the newly added nucleotide binds with the parent strand nucleotide correctly or not.
DNA polymerase, or more correctly known as DNA dependent DNA polymerase is the enzyme which functions to add nucleotides to form a new daughter strand from the parent strand template. It also performs proofreading and exonuclease activity.
Replication is the process which occurs inside the nucleus itself. Here the parent strand of DNA forms two new daughter strands by acting as a template. The DNA unwinds at a certain portion for replication to take place.
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An__________ axon with a _________ diameter carries electrical impulses the fastest.
A myelinated axon with a larger diameter carries electrical impulses the fastest.
Myelin is a fatty sheath that surrounds some axons, which speeds up the conduction of electrical impulses. A myelinated axon allows the electrical impulse to "jump" from one node of Ranvier to the next, which is called saltatory conduction. This process is faster and more efficient than unmyelinated axons, which require the electrical impulse to travel along the entire length of the axon.
In addition, axon diameter also plays a role in the speed of conduction. Larger diameter axons have less resistance to electrical flow, allowing for faster conduction. Together, a myelinated axon with a larger diameter is able to carry electrical impulses the fastest.
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describe the symbiotic relationship between coral polyps and zooxanthellae using the following terms: coral polyps, zooxanthellae, algae, photosynthesis, mutualism.
The symbiotic relationship between coral polyps and zooxanthellae is an example of mutualism. In this relationship, coral polyps, which are small marine animals, provide a protective habitat for zooxanthellae, which are single-celled algae. In return, the zooxanthellae provide the coral polyps with nutrients through a process called photosynthesis.
Coral polyps are tiny invertebrates that live in large colonies and build the hard, calcium carbonate structures that form coral reefs. Zooxanthellae are unicellular algae that live within the tissues of coral polyps. These algae photosynthesize and produce food, which is then shared with the coral polyps. In return, the coral polyps provide a protective environment and a steady supply of carbon dioxide for the algae to use during photosynthesis. This mutually beneficial relationship allows the coral polyps to grow and thrive, and the zooxanthellae to survive and reproduce. However, if the coral polyps become stressed due to environmental factors like pollution or rising sea temperatures, they may expel the zooxanthellae, causing the coral to become bleached and eventually die.
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Taking a block of marble and carving a human figure out of it is considered to be what kind of sculptural process?
The sculptural process of carving a human figure out of a block of marble is called subtractive sculpture.
Subtractive sculpture is a process of removing material from a block of material such as stone, wood, or marble to create a three-dimensional artwork.
In this process, the artist starts with a solid block of material and removes the excess to form the desired shape. The tools used for subtractive sculpture include chisels, hammers, and rasps. This method is widely used in the creation of classical sculptures, such as Michelangelo's David, and is also used in modern sculpture. Subtractive sculpture allows artists to create a sense of depth and texture in their works.
Subtractive sculpture is a process in which the artist removes material from a solid block to create the desired form. In this case, the block of marble serves as the starting point, and the artist gradually carves away at it, removing excess material to reveal the human figure within. This method contrasts with additive sculpture, where the artist builds up the form by adding material. The subtractive process is commonly used with materials like marble, wood, and stone, allowing the sculptor to work with the material's natural characteristics to create a detailed and realistic figure.
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When an antibody binds to an antigen, 1 of 3 things may occur. Name the 3 possibilities
When an antibody binds to an antigen, one of the three things that may occur are neutralization of the antigen, opsonization of the antigen, or activation of the complement system.
What happens when the antibody binds to an antigen?
The immune system uses antibodies to recognize and bind to antigens, which are foreign substances that can cause harm to the body. Neutralization occurs when the antibody blocks the harmful effects of the antigen, such as by preventing it from entering cells or by blocking its ability to bind to other molecules.
Opsonization occurs when the antibody tags the antigen for destruction by immune cells, such as macrophages or neutrophils. Activation of the complement system occurs when the antibody triggers a series of chemical reactions that lead to the destruction of the antigen by a group of proteins called complement proteins.
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the outer layer of the cerebrum, called the cerebral ____, is formed by gray matter.
The outer layer of the cerebrum, called the cerebral cortex, is formed by gray matter.
The cerebral cortex is the most highly developed part of the brain, responsible for many of our higher cognitive functions such as consciousness, perception, thought, memory, and language. The cerebral cortex is formed by gray matter, which consists of neuronal cell bodies, dendrites, and unmyelinated axons. It is made up of billions of neurons that are densely packed and arranged in six distinct layers. The gray matter refers to the cell bodies of these neurons, while the white matter beneath the cortex is composed of axons that connect the different regions of the brain. The thickness and organization of the cortex vary throughout different areas of the brain and change over time due to experiences and environmental factors.
In summary, the cerebral cortex is the outer layer of the cerebrum, made up of gray matter that is responsible for many of our higher cognitive functions.
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Why does the concentration of carbon dioxide have to be low to leave the blood and enter the alveoli
Answer: The blood diffused from carbon dioxide can be put in the alveoli. There is a higher concentration of the carbon dioxide in the blood compared to the lungs. The high levels of carbon dioxide need to be lowered, because the higher levels of carbon dioxide can lead to respiratory failure.
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all glands of the body (except sweat glands)are innervated by what ?
The glands of the body, except sweat glands, are innervated by the autonomic nervous system.
This autonomic nervous system is composed of the sympathetic and parasympathetic nervous systems, which are responsible for the regulation of the body's involuntary functions.
These functions include the regulation of the heart rate, breathing rate, digestion, and other physiological processes such as the secretion of hormones. The autonomic nervous system acts as a feedback mechanism to control the release of hormones and other substances that are necessary for the body to function properly.
It is also responsible for controlling the activity of the glands, as well as their secretion of hormones and other substances. The autonomic nervous system is also responsible for initiating and maintaining the body's homeostatic balance.
Homeostasis is the process by which the body monitors and maintains its internal environment to ensure that it is in a state of balance and equilibrium. In this way, the autonomic nervous system helps to regulate the body's temperature, blood pressure, and other bodily functions.
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When meiosis occurs, four daughter cells containing 50% of a parent’s genetic material are produced. The genes contained in these cells are divided randomly. When fertilized with another haploid cell, a full genetic code is formed. Because genes are divided randomly during this process, the resulting offspring -
A) express the same inherited traits
B) contain only half of the genetic code
C) will differ in expressed traits
D) lack differentiated cells
Answer:
B
Explanation:
that is the only one that makes since
why does rita compare a genetic mutation to a misspelled word?
Rita compares a genetic mutation to a misspelled word because both involve a small error with potentially significant consequences. In a misspelled word, one or more letters are misplaced, added, or removed, which changes the meaning of the word.
In genetics, mutations are changes in the DNA sequence, which can result from various factors like copying errors during DNA replication, exposure to radiation, or certain chemicals. Similarly, a misspelled word is an alteration in the correct sequence of letters in a word, which can occur due to typing errors, lack of knowledge, or simple oversight. Just like a misspelled word can alter the meaning of a sentence or create confusion, a genetic mutation can lead to changes in the protein encoded by the affected gene.
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Write your question here (keep it simple and clear to get the best answer)
QUESTION : If you study in Inproper light, then your eye sight get damaged. Is this true? Why?
are viruses living things? Why or why not. What is a capsid? Envelope? Can they reproduce independently? what is the name given to virusus that can specifically target bacteria? What are the tail sheath and tail fibers?
Viruses are considered to be at the borderline of living and non-living things. They possess certain characteristics of living organisms, such as genetic material (DNA or RNA), but lack key features like a cellular structure or the ability to reproduce independently.
The question of whether viruses are living things is a subject of debate among scientists. Some scientists consider viruses to be non-living entities because they cannot carry out metabolic processes or reproduce independently, while others consider them to be living because they can replicate and evolve over time.
In summary, viruses are complex entities that exhibit some living characteristics, but due to their reliance on host cells for reproduction and lack of cellular structure, they are not considered fully living organisms.
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oxygen is the only electron acceptor for cellular respiration on our planet today.
Answer: yes
Explanation:
its right
The given statement " oxygen is the only electron acceptor for cellular respiration on our planet today" is false.
On our world today, oxygen is not the only electron acceptor for cellular respiration. While the most frequent kind of respiration in eukaryotes and many prokaryotes is aerobic respiration, which uses oxygen as the ultimate electron acceptor, there are other electron acceptors that can be employed in anaerobic environments.
As an illustration, some prokaryotes can utilise carbon dioxide, nitrate, or sulphate as the last electron acceptor during anaerobic respiration. Methanogenesis is a type of anaerobic respiration that is carried out by a species of archaea known as methanogens.
In a process known as metal respiration, some organisms can even utilise metals like iron and manganese as electron acceptors.
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The following question may be like this:
Oxygen is the only electron acceptor for cellular respiration on our planet today. True or false.
Swelling soils occur when water is added to which type of minerals?
Swelling soils occur when water is added to minerals such as smectite or montmorillonite, which are known as expansive clays. These minerals have a high ability to absorb water and expand, leading to soil swelling and potential damage to structures built on top of them.
Shrinking and swelling soils
Shrink–swell is the volume change that occurs as a result of changes in the moisture content of clay-rich soils. Swelling pressures can cause heave, or lifting of structures, whilst shrinkage can cause settlement or subsidence, which may be differential.
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In the thymus gland, any t-cell that has the potential to destroy the body's own cells undergoes , which destroys the cell.
a. True
b. False
The statement "In the thymus gland, any t-cell that has the potential to destroy the body's own cells undergoes , which destroys the cell." is true.
The thymus gland plays a crucial role in the development and maturation of T-cells. T-cells that have the potential to attack the body's own cells undergo a process called negative selection, where they are eliminated through apoptosis, a programmed cell death.
This process ensures that only T-cells that can recognize foreign antigens and not attack the body's own cells are allowed to mature and leave the thymus gland. This mechanism helps prevent autoimmune diseases where the immune system mistakenly attacks the body's own tissues.
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as you study two closely related predatory insect species, the two-spot and the three-spot avenger beetles, you notice that each species seeks prey at night when present in an area where the other beetle species is absent. however, where their ranges overlap, the two-spot avenger beetle hunts at night and the three-spot hunts in the morning. when you bring them into the laboratory and isolate the two different species, you discover that the offspring of both species are nocturnal. the observations above indicate that the two species most likely demonstrate which of following ecological processes? you have discovered an example of . question 8 options: a) character displacement b) resource partitioning c) batesian mimicry d) mutualism
The data made above suggest that resource partitioning is an ecological mechanism that the two insect species most likely exhibit. Option b is Correct.
Species that dwell in the same community might develop to use distinct resources, which lessens competition. This process is known as resource partitioning. When present in a region where the other beetle species is absent, the two-spot and three-spot avenger beetles hunt for food at night. They are closely related predatory bug species.
The two species have evolved to hunt at opposite times of the day where their ranges overlap, with the three-spot avenger beetle hunting in the morning and the two-spot avenger beetle hunting at night. As they are no longer directly fighting for the same resources, this lessens conflict between the two species for prey. Option b is Correct.
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Which phase of mitosis is represented in the diagram?
prophase
telophase
anaphase
metaphase
this phase of mitosis is referred to as Metaphase
The spindle apparatus (represented by the lines) has completely formed, each spindle fibre is attached to the centromere of the chromosome. The chromosomes are lined up at the centre (equator) of the cell. This is for preparation of separation- prior to the next stages in which it becomes pulled apart.
spindle apparatus- all lines
spindle fibre- an individual line
centromere- the middle of the chromosome
chromsome- repesented as an X in the diagram
mothers who seem to be self-sacrificing but are actually using their children to meet their own needs are called mothers.
Mothers who seem to be self-sacrificing but are actually using their children to meet their own needs are called "covertly narcissistic mothers."
These covertly narcissistic mothers may appear to be selfless and devoted to their children, but their true intention is to fulfill their own needs and desires. They often manipulate their children by using guilt, shame, and control tactics to keep them dependent and fulfill the mother's emotional needs.
Children of such mothers may feel responsible for their mother's happiness and may struggle with self-esteem and boundary issues in their lives. To maintain this facade, the covert narcissist may continuously portray themselves as a victim, martyr, or caregiver to ensure they receive attention and admiration from others.
This dynamic can be harmful to both the mother and the child, as it undermines the child's emotional development and the healthy parent-child relationship.
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The fluid mosaic model of the cell membrane refers to the fact that the_____________bilayer is a fluid structure in which molecules move laterally and it's a mosaic of ___________ and ______________
The fluid mosaic model of the cell membrane refers to the fact that the phospholipid bilayer is a fluid structure in which molecules move laterally, and it's a mosaic of proteins and carbohydrates.
The fluid mosaic model describes the cell membrane as a dynamic structure with the phospholipid bilayer acting as a fluid base where proteins and carbohydrates are embedded or attached.
The phospholipid bilayer is made up of two layers of phospholipids with their hydrophilic heads facing outward and hydrophobic tails facing inward, providing a semi-permeable barrier for the cell. Proteins within the membrane serve various functions, such as transport, signal transduction, and cell recognition.
Carbohydrates attached to proteins or lipids function as cell markers, enabling cell-to-cell communication and recognition. The fluidity of the membrane allows the lateral movement of molecules, contributing to membrane flexibility and overall cell function.
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you want to design a repressor protein mutant. which protein domain is the best target for preventing binding of the corepressor?A. promoter domain B. helix-turn-helix domain C. DNA-binding domain D. allosteric domain E. activator binding site
The best target for preventing the binding of the corepressor in a repressor protein mutant is the D) allosteric domain.
The allosteric domain of a protein is responsible for binding with small molecules or ligands, which can induce a conformational change in the protein and affect its activity. In the case of a repressor protein, the corepressor binds with the allosteric domain and induces a conformational change that leads to the repression of the gene. By designing a mutant that prevents the binding of the corepressor to the allosteric domain, the conformational change will not occur, and the gene will not be repressed. This can be achieved by introducing specific mutations in the allosteric domain that prevent the corepressor from binding to it.
In contrast, the promoter domain, helix-turn-helix domain, DNA-binding domain, and activator binding site are all involved in regulating the binding of the repressor protein to DNA, and targeting them may not be as effective in preventing the binding of the corepressor.
In summary, the allosteric domain is the best target for preventing the binding of the corepressor in a repressor protein mutant, as it is responsible for inducing the conformational change that leads to gene repression.
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substances that react under the influence of an enzyme are usually held to the enzyme by
Answer:
side chains of amino acids in enzyme protein ?
Explanation:
Substances that react under the influence of an enzyme are usually held to the enzyme by weak chemical interactions, including hydrogen bonds, ionic bonds, and hydrophobic interactions.
These interactions are not strong enough to cause a permanent chemical bond between the enzyme and substrate, but they are strong enough to allow the enzyme to catalyze the reaction by bringing the substrates into close proximity and providing an optimal environment for the reaction to occur.
The specific chemical interactions between the enzyme and substrate are determined by the three-dimensional structure of the enzyme's active site, which is complementary to the shape and chemical properties of the substrate. This specificity is crucial for the enzyme to catalyze a specific reaction and not others.
Once the reaction is complete, the product(s) are released from the active site, and the enzyme is free to catalyze another reaction with another substrate.
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What is chemotaxis? What structure does it use? Name this structure and its components
Chemotaxis is the process by which cells move in response to chemical gradients in their environment. The structure that bacteria use for chemotaxis is called a flagellum. The flagellum consists of three main parts: the basal body, the hook, and the filament.
Chemotaxis plays a crucial role in various biological processes such as immune response, wound healing, and development.
The structure involved in chemotaxis is the flagellum, which is a whip-like appendage that extends from the cell's surface. The flagellum helps the cell move toward or away from the chemical stimuli.
The flagellum consists of three main components:
Filament - a long, helical structure composed of the protein flagellin, which forms the main body of the flagellum.Hook - a flexible, curved region that connects the filament to the basal body.Basal body - a complex structure embedded in the cell membrane, consisting of a series of protein rings and a central rod, which is responsible for generating the flagellar rotation that propels the cell.In summary, chemotaxis is the cell's directed movement in response to chemical gradients, utilizing the flagellum as its primary structure, which is composed of the filament, hook, and basal body.
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would bile salts be effective if they were exclusively polar molecules instead of amphiphilic molecules?
No, bile salts would not be effective if they were exclusively polar molecules instead of amphiphilic molecules. Bile salts are effective in their role of emulsifying fats and aiding in their digestion because they are amphiphilic molecules, meaning they have both polar and nonpolar properties.
This allows them to interact with both water-soluble and fat-soluble substances, making them effective in breaking down and solubilizing dietary fats. If bile salts were exclusively polar, they would not be able to interact with the nonpolar fats, and their ability to aid in digestion would be greatly reduced. Bile salts would not be as effective if they were exclusively polar molecules instead of amphiphilic molecules. Amphiphilic molecules have both polar and non-polar regions, which allow them to interact with both polar and non-polar substances.
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if you needed specific information regarding bacterial classification and taxonomy, which one of the following resources should you use:_______
Answer: Bergeys manual of systematic bacteriology
Explanation: Does this answer your question?<33
Bergey's Manual of Systematic Bacteriology is a comprehensive and authoritative resource that provides detailed information on the classification and taxonomy of bacteria.
This manual contains descriptions of bacterial species, their characteristics, and their placement in the taxonomic hierarchy. By using Bergey's Manual, you can identify and classify bacteria based on various criteria such as morphology, biochemical tests, and molecular characteristics.
Researchers and professionals in microbiology, as well as students, can use this resource as a reliable guide to better understand the diversity and relationships among bacterial species. This manual is continuously updated, ensuring that it reflects the latest scientific findings in bacterial taxonomy.
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darwin’s hunting hypothesis, rodman and mchenry’s patchy forest hypothesis, and lovejoy’s provisioning hypothesis are three very different explanations for the rise of hominins, but all three invoke the same anatomical feature. what feature is this?
The anatomical feature that is invoked in all three hypotheses for the rise of hominins is bipedalism. Bipedalism refers to the ability to walk on two legs, which is a defining characteristic of hominins.
It is hypothesized that bipedalism provided hominins with a number of advantages, including the ability to travel long distances over open terrain, access new food sources, and free up their hands for tool use and other tasks. The different hypotheses mentioned in the question provide different explanations for why hominins evolved bipedalism, with some suggesting it was for hunting, others for navigating patchy forests, and still others for carrying food back to a central location.
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What kind of trait is illustrated in the diagram?
A.
Autosomal recessive
B.
Autosomal dominant
C.
Sex-linked recessive
D.
Sex-linked dominant
Pedigrees can be used to understand the inheritance pattern of a trait. In the exposed example, this trait is coded by a gene that expresses complete dominance. Option B. Autosomal dominant.
What is a pedigree?
A Pedigree is the representation of a family's history. This graph is used to track a trait through different generations, and analyze the inheritance pattern of a particular gene and its expression.
It is a tool used to understand how genes are transmitted from the parental generation to the descendants, and what are the probabilities of inheriting them.
In the exposed example, we have a trait coded by an autosomal gene that expresses complete dominance. The dominant allele is the one coding for the trait.
Let is analyze the crosses,
We will assume A is the dominant allele and a is the recessive allele
Generation I
Cross: Individual I1 x I2Parentals) Aa x Aa
F1) The expected genotypes among the offspring are 25% AA, 50% Aa, and 25% aa.
Cross: Individual I3 x I4Parentals) aa x Aa
F1) The expected genotypes among the offspring are 50% aa and 50% Aa.
Generation II
Cross: Individuals II3 x II4Parentals) aa x aa
F2) 100% of the offspring is expected to be homozygous recessive, aa.
Option B. Autosomal dominant.
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What information is provided by the fossil record that cannot be provided by examining living organisms? a record of extinct species absolute dates for when different taxa diverged records of environmental conditions the existence and timing of mass extinctions All of these choices are correct.
The fossil record provides valuable information that cannot be obtained by examining living organisms alone. In this context, the correct answer is "All of these choices are correct," as the fossil record offers:
1. A record of extinct species: Fossils represent remnants of organisms that lived in the past, including species that are no longer present on Earth.
2. Absolute dates for when different taxa diverged: By studying fossils and using radiometric dating techniques, scientists can estimate the time when different species or groups of organisms diverged from each other.
3. Records of environmental conditions: Fossils can give clues about the environment in which the organisms lived, including climate, water conditions, and habitat types.
4. The existence and timing of mass extinctions: The fossil record can reveal evidence of mass extinction events, such as the disappearance of many species within a relatively short period, and help determine when these events occurred.
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the _________ nervous system calms the body, whereas the nervous system prepares the individual for fighting or running away.
Answer:
the parasympathetic nervous system
Explanation:
the parasympathetic nervous system calms the body whenever it is agitated
the sympathetic nervous system agitates or alerts the body whenever threatened
The parasympathetic nervous system calms the body, whereas the sympathetic nervous system prepares the individual for fighting or running away.
The parasympathetic nervous system is responsible for regulating rest and digestion, lowering heart rate and blood pressure, and conserving energy.
On the other hand, the sympathetic nervous system triggers the "fight or flight" response, increasing heart rate and blood pressure, dilating pupils, and releasing adrenaline to prepare the body for action.
These two systems work together to maintain homeostasis in the body and respond appropriately to different situations.
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What soil has fine texture and becomes sticcky when wet?
T/F the vessels serving abdominal organs are collectively called circulation.
The statement: the vessels serving abdominal organs are collectively called circulation is FALSE.
The vessels serving abdominal organs are collectively called the "abdominal circulation," but it is just a part of the larger systemic circulation that includes all vessels in the body.
The systemic circulation is responsible for delivering oxygen and nutrients to all tissues and organs of the body and removing waste products, while the abdominal circulation specifically supplies blood to the organs in the abdominal cavity, such as the stomach, liver, spleen, pancreas, and intestines.
It is important to note that while the abdominal circulation is part of the larger systemic circulation, it does have some unique features, such as the portal vein that carries blood from the digestive organs to the liver for processing before it returns to the heart.
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Outline the processes by which named molecules are absorbed from the contents of the small intestine into the blood.
The process of absorption of named molecules from the contents of the small intestine into the blood involves several steps where first molecules pass through the epithelial cells into the bloodstream.
Thus, the molecules are first broken down by enzymes into their smallest components, such as amino acids, etc. in the small intestine. These molecules then pass through the epithelial cells outlining the intestine through either passive diffusion or active transport.
Inside the epithelial cells outlining the small intestine, the molecules are then transported across the cells through the basolateral membrane into the bloodstream by capillaries followed by their transportation to the liver, where they are metabolized and distributed to the rest of the body.
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