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人类疾病中的 X 因素:基因含量和剂量调控的影响。

X-factors in human disease: impact of gene content and dosage regulation.

机构信息

Department of Laboratory Medicine and Pathology, University of Washington, Seattle, WA 98195, USA.

Department of Medicine, University of Washington, Seattle, WA 98195, USA.

出版信息

Hum Mol Genet. 2021 Oct 1;30(R2):R285-R295. doi: 10.1093/hmg/ddab221.

Abstract

The gene content of the X and Y chromosomes has dramatically diverged during evolution. The ensuing dosage imbalance within the genome of males and females has led to unique chromosome-wide regulatory mechanisms with significant and sex-specific impacts on X-linked gene expression. X inactivation or silencing of most genes on one X chromosome chosen at random in females profoundly affects the manifestation of X-linked diseases, as males inherit a single maternal allele, while females express maternal and paternal alleles in a mosaic manner. An additional complication is the existence of genes that escape X inactivation and thus are ubiquitously expressed from both alleles in females. The mosaic nature of X-linked gene expression and the potential for escape can vary between individuals, tissues, cell types and stages of life. Our understanding of the specialized nature of X-linked genes and of the multilayer epigenetic regulation that influence their expression throughout the organism has been helped by molecular studies conducted by tissue-specific and single-cell-specific approaches. In turn, the definition of molecular events that control X silencing has helped develop new approaches for the treatment of some X-linked disorders. This review focuses on the peculiarities of the X chromosome genetic content and epigenetic regulation in shaping the manifestation of congenital and acquired X-linked disorders in a sex-specific manner.

摘要

X 和 Y 染色体的基因组成在进化过程中发生了巨大的分歧。由此导致的男性和女性基因组内的剂量不平衡,导致了独特的全染色体调控机制,对 X 连锁基因表达产生了重大的性别特异性影响。女性中随机选择的一条 X 染色体上的大多数基因发生 X 失活或沉默,这会严重影响 X 连锁疾病的表现,因为男性只从母亲那里继承一个等位基因,而女性则以镶嵌的方式表达母系和父系等位基因。一个额外的复杂情况是存在逃避 X 失活的基因,因此这些基因在女性中从两个等位基因中普遍表达。X 连锁基因表达的镶嵌性质以及逃避的可能性在个体、组织、细胞类型和生命阶段之间存在差异。通过组织特异性和单细胞特异性方法进行的分子研究,帮助我们更好地理解 X 连锁基因的特殊性以及影响其在整个生物体中表达的多层表观遗传调控。反过来,控制 X 沉默的分子事件的定义也有助于开发一些 X 连锁疾病的治疗新方法。这篇综述重点介绍了 X 染色体遗传内容和表观遗传调控的特殊性,这些特殊性以性别特异性的方式塑造了先天性和获得性 X 连锁疾病的表现。

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