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哺乳动物 X 染色体剂量补偿:生殖细胞视角。

Mammalian X Chromosome Dosage Compensation: Perspectives From the Germ Line.

机构信息

Department of Reproductive Medicine, KK Women's and Children's Hospital, Singapore 229899, Singapore.

Duke-NUS Graduate Medical School, Singapore, 119077, Singapore.

出版信息

Bioessays. 2018 Jun;40(6):e1800024. doi: 10.1002/bies.201800024. Epub 2018 May 14.

Abstract

Sex chromosomes are advantageous to mammals, allowing them to adopt a genetic rather than environmental sex determination system. However, sex chromosome evolution also carries a burden, because it results in an imbalance in gene dosage between females (XX) and males (XY). This imbalance is resolved by X dosage compensation, which comprises both X chromosome inactivation and X chromosome upregulation. X dosage compensation has been well characterized in the soma, but not in the germ line. Germ cells face a special challenge, because genome wide reprogramming erases epigenetic marks responsible for maintaining the X dosage compensated state. Here we explain how evolution has influenced the gene content and germ line specialization of the mammalian sex chromosomes. We discuss new research uncovering unusual X dosage compensation states in germ cells, which we postulate influence sexual dimorphisms in germ line development and cause infertility in individuals with sex chromosome aneuploidy.

摘要

性染色体对哺乳动物有利,使它们能够采用遗传而不是环境的性别决定系统。然而,性染色体的进化也带来了负担,因为它导致了雌性(XX)和雄性(XY)之间基因剂量的不平衡。这种不平衡通过 X 染色体剂量补偿来解决,包括 X 染色体失活和 X 染色体上调。X 染色体剂量补偿在体细胞中得到了很好的描述,但在生殖细胞中没有得到很好的描述。生殖细胞面临着一个特殊的挑战,因为全基因组重编程消除了负责维持 X 染色体剂量补偿状态的表观遗传标记。在这里,我们解释了进化是如何影响哺乳动物性染色体的基因含量和生殖细胞特化的。我们讨论了新的研究揭示了生殖细胞中不寻常的 X 染色体剂量补偿状态,我们推测这些状态会影响生殖细胞发育中的性别二态性,并导致性染色体非整倍体个体不育。

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