Regulation of X-Chromosome Inactivation in Development in Mice and Humans

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Regulation of X-chromosome inactivation in development in mice and humans.

Dosage compensation for X-linked genes in mammals is accomplished by inactivating one of the two X chromosomes in females. X-chromosome inactivation (XCI) occurs during development, coupled with cell differentiation. In somatic cells, XCI is random, whereas in extraembryonic tissues, XCI is imprinted in that the paternally inherited X chromosome is preferentially inactivated. Inactivation is in...

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X Chromosome Inactivation in Opioid Addicted Women

Introduction: X chromosome inactivation (XCI) is a process during which one of the two X chromosomes in female human is silenced leading to equal gene expression with males who have only one X chromosome. Here we have investigated XCI ratio in females with opioid addiction to see whether XCI skewness in women could be a risk factor for opioid addiction. Methods: 30 adult females meeting DS...

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Regulation of imprinted X-chromosome inactivation in mice by Tsix.

In mammals, X-chromosome inactivation is imprinted in the extra-embryonic lineages with paternal X chromosome being preferentially inactivated. In this study, we investigate the role of Tsix, the antisense transcript from the Xist locus, in regulation of Xist expression and X-inactivation. We show that Tsix is transcribed from two putative promoters and its transcripts are processed. Expression...

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Regulation of X-chromosome inactivation in mammals.

AS consistently demonstrated by confirmations of the Lyon hypothesis (LYON 1961, 1972), only one of the two X chromosomes is expressed genetically in females of eutherian mammals. Which of the two X chromosomes is to remain active is determined, apparently at random, during early embryogeny, and thereafter maintained in subsequent somatic cell lineages. In the germ line, however, both X's appea...

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X-chromosome inactivation in development and cancer.

X-chromosome inactivation represents an epigenetics paradigm and a powerful model system of facultative heterochromatin formation triggered by a non-coding RNA, Xist, during development. Once established, the inactive state of the Xi is highly stable in somatic cells, thanks to a combination of chromatin associated proteins, DNA methylation and nuclear organization. However, sporadic reactivati...

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ژورنال

عنوان ژورنال: Microbiology and Molecular Biology Reviews

سال: 1998

ISSN: 1092-2172,1098-5557

DOI: 10.1128/mmbr.62.2.362-378.1998