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A human artificial chromosome (HAC) is a microchromosome that can act as a new chromosome in a population of human cells.
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Human artificial chromosome - Wikipedia
Human artificial chromosome - Wikipedia Human artificial chromosome From Wikipedia, the free encyclopedia Jump to navigation Jump to search A human artificial chromosome (HAC) is a microchromosome that can act as a new chromosome in a population of human cells. That is, instead of 46 chromosomes, the cell could have 47 with the 47th being very small, roughly 6–10 megabases (Mb) in size instead of 50–250 Mb for natural chromosomes, and able to




he 47th being very small, roughly 6–10 megabases (Mb) in size instead of 50–250 Mb for natural chromosomes,
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Human artificial chromosome - Wikipedia
search A human artificial chromosome (HAC) is a microchromosome that can act as a new chromosome in a population of human cells. That is, instead of 46 chromosomes, the cell could have 47 with t<span>he 47th being very small, roughly 6–10 megabases (Mb) in size instead of 50–250 Mb for natural chromosomes, and able to carry new genes introduced by human researchers. Ideally, researchers could integrate different genes that perform a variety of functions, including disease defense. Alterna




Alternative methods of creating transgenes, such as utilizing yeast artificial chromosomes and bacterial artificial chromosomes, lead to unpredictable problems. The genetic material introduced by these vectors not only leads to different expression levels, but the inserts also disrupt the original genome.[
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Human artificial chromosome - Wikipedia
al chromosomes, and able to carry new genes introduced by human researchers. Ideally, researchers could integrate different genes that perform a variety of functions, including disease defense. <span>Alternative methods of creating transgenes, such as utilizing yeast artificial chromosomes and bacterial artificial chromosomes, lead to unpredictable problems. The genetic material introduced by these vectors not only leads to different expression levels, but the inserts also disrupt the original genome.[1] HACs differ in this regard, as they are entirely separate chromosomes. This separation from existing genetic material assumes that no insertional mutants would arise.[2] This stabilit




Flashcard 6770636754188

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Diabetes mellitus (DM) refers to a group of common metabolic disor- ders that share the phenotype of hyperglycemia

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