生物
染色质
减数分裂
遗传学
染色体
同源重组
染色体分离
体细胞
联会复合体
遗传重组
倍性
细胞生物学
DNA
基因
重组
作者
Chris Morgan,Aditya R. Nayak,Noriko Hosoya,Gerald R. Smith,Christophe Lambing
出处
期刊:Current Topics in Developmental Biology
日期:2022-06-20
卷期号:: 91-126
被引量:4
标识
DOI:10.1016/bs.ctdb.2022.04.008
摘要
Chromosomes adopt specific conformations to regulate various cellular processes. A well-documented chromosome configuration is the highly compacted chromosome structure during metaphase. More regional chromatin conformations have also been reported, including topologically associated domains encompassing mega-bases of DNA and local chromatin loops formed by kilo-bases of DNA. In this review, we discuss the changes in chromatin conformation taking place between somatic and meiotic cells, with a special focus on the establishment of a proteinaceous structure, called the chromosome axis, at the beginning of meiosis. The chromosome axis is essential to support key meiotic processes such as chromosome pairing, homologous recombination, and balanced chromosome segregation to transition from a diploid to a haploid stage. We review the role of the chromosome axis in meiotic chromatin organization and provide a detailed description of its protein composition. We also review the conserved and distinct roles between species of axis proteins in meiotic recombination, which is a major factor contributing to the creation of genetic diversity and genome evolution. Finally, we discuss situations where the chromosome axis is deregulated and evaluate the effects on genome integrity and the consequences from protein deregulation in meiocytes exposed to heat stress, and aberrant expression of genes encoding axis proteins in mammalian somatic cells associated with certain types of cancers.
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