Department of Molecular and Cell Biology, Howard Hughes Medical Institute, University of California, Berkeley, Berkeley, CA 94720-3204, USA.
Genetics. 2022 Feb 4;220(2). doi: 10.1093/genetics/iyab197.
Abnormalities in chromosome number have the potential to disrupt the balance of gene expression and thereby decrease organismal fitness and viability. Such abnormalities occur in most solid tumors and also cause severe developmental defects and spontaneous abortions. In contrast to the imbalances in chromosome dose that cause pathologies, the difference in X-chromosome dose used to determine sexual fate across diverse species is well tolerated. Dosage compensation mechanisms have evolved in such species to balance X-chromosome gene expression between the sexes, allowing them to tolerate the difference in X-chromosome dose. This review analyzes the chromosome counting mechanism that tallies X-chromosome number to determine sex (XO male and XX hermaphrodite) in the nematode Caenorhabditis elegans and the associated dosage compensation mechanism that balances X-chromosome gene expression between the sexes. Dissecting the molecular mechanisms underlying X-chromosome counting has revealed how small quantitative differences in intracellular signals can be translated into dramatically different fates. Dissecting the process of X-chromosome dosage compensation has revealed the interplay between chromatin modification and chromosome structure in regulating gene expression over vast chromosomal territories.
染色体数目的异常有可能打破基因表达的平衡,从而降低生物个体的适应性和存活能力。这种异常存在于大多数实体瘤中,也会导致严重的发育缺陷和自发性流产。与导致病变的染色体剂量失衡不同,不同物种用来决定性别命运的 X 染色体剂量差异是可以很好地耐受的。在这些物种中,已经进化出了剂量补偿机制来平衡雌雄两性之间的 X 染色体基因表达,从而使它们能够耐受 X 染色体剂量的差异。本综述分析了线虫秀丽隐杆线虫中用于计数 X 染色体数量以确定性别(XO 雄性和 XX 雌雄同体)的染色体计数机制,以及平衡雌雄两性 X 染色体基因表达的相关剂量补偿机制。解析 X 染色体计数的分子机制揭示了细胞内信号的微小定量差异如何能被转化为截然不同的命运。解析 X 染色体剂量补偿的过程揭示了染色质修饰和染色体结构在调节大片段染色体区域的基因表达中的相互作用。