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Sex and death: from cell fate specification to dynamic control of X-chromosome structure and gene expression

机译:性与死亡:从细胞命运规范到X染色体结构和基因表达的动态控制

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摘要

Determining sex is a binary developmental decision that most metazoans must make. Like many organisms, Caenorhabditis elegans specifies sex (XO male or XX hermaphrodite) by tallying X-chromosome number. We dissected this precise counting mechanism to determine how tiny differences in concentrations of signals are translated into dramatically different developmental fates. Determining sex by counting chromosomes solved one problem but created another—an imbalance in X gene products. We found that nematodes compensate for the difference in X-chromosome dose between sexes by reducing transcription from both hermaphrodite X chromosomes. In a surprising feat of evolution, X-chromosome regulation is functionally related to a structural problem of all mitotic and meiotic chromosomes: achieving ordered compaction of chromosomes before segregation. We showed the dosage compensation complex is a condensin complex that imposes a specific three-­dimensional architecture onto hermaphrodite X chromosomes. It also triggers enrichment of histone modification H4K20me1. We discovered the machinery and mechanism underlying H4K20me1 enrichment and demonstrated its pivotal role in regulating higher-order X-chromosome structure and gene expression.
机译:确定性别是大多数后生动物必须做出的二进制发展决定。像许多生物一样,秀丽隐杆线虫通过计算X染色体数来指定性别(XO男性或XX两性人)。我们剖析了这种精确的计数机制,以确定信号集中的微小差异如何转化为截然不同的发育命运。通过计数染色体来确定性别解决了一个问题,但又产生了另一个问题-X基因产物的不平衡。我们发现线虫通过减少两个雌雄同体X染色体的转录来补偿性别之间X染色体剂量的差异。在令人惊讶的进化壮举中,X染色体调控在功能上与所有有丝分裂和减数分裂染色体的结构性问题相关:在分离前实现染色体的有序压缩。我们证明了剂量补偿复合物是一种凝聚素复合物,将特定的三维结构施加到雌雄同体的X染色体上。它还触发了组蛋白修饰H4K20me1的富集。我们发现了H4K20me1富集的机制和机制,并证明了其在调节高阶X染色体结构和基因表达中的关键作用。

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