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Genes that escape from X inactivation.

机译:从X失活逃脱的基因。

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To achieve a balanced gene expression dosage between males (XY) and females (XX), mammals have evolved a compensatory mechanism to randomly inactivate one of the female X chromosomes. Despite this chromosome-wide silencing, a number of genes escape X inactivation: in women about 15% of X-linked genes are bi-allelically expressed and in mice, about 3%. Expression from the inactive X allele varies from a few percent of that from the active allele to near equal expression. While most genes have a stable inactivation pattern, a subset of genes exhibit tissue-specific differences in escape from X inactivation. Escape genes appear to be protected from the repressive chromatin modifications associated with X inactivation. Differences in the identity and distribution of escape genes between species and tissues suggest a role for these genes in the evolution of sex differences in specific phenotypes. The higher expression of escape genes in females than in males implies that they may have female-specific roles and may be responsible for some of the phenotypes observed in X aneuploidy.
机译:为了在雄性(XY)和雌性(XX)之间达到平衡的基因表达剂量,哺乳动物已经进化出一种补偿机制来随机灭活雌性X染色体之一。尽管存在这种全染色体沉默,但仍有许多基因逃避了X灭活:在女性中,约有15%的X连锁基因被双等位基因表达,在小鼠中,约有3%。无效X等位基因的表达从活跃等位基因的百分之几到几乎相等的表达。尽管大多数基因具有稳定的灭活模式,但是一部分基因在逃避X灭活方面表现出组织特异性差异。逃避基因似乎受到保护,免受与X失活相关的抑制性染色质修饰。物种和组织之间逃避基因的身份和分布的差异表明,这些基因在特定表型性别差异的进化中发挥了作用。女性中逃生基因的表达高于男性,这意味着它们可能具有女性特异性的作用,并且可能是X非整倍性中观察到的某些表型的原因。

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