Pan Chenyi, Fan Yuhong
School of Biology, Georgia Institute of Technology, Atlanta, GA 30332, USA; The Petit Institute for Bioengineering and Bioscience, Georgia Institute of Technology, Atlanta, GA 30332, USA.
School of Biology, Georgia Institute of Technology, Atlanta, GA 30332, USA; The Petit Institute for Bioengineering and Bioscience, Georgia Institute of Technology, Atlanta, GA 30332, USA.
Biochim Biophys Acta. 2016 Mar;1859(3):496-509. doi: 10.1016/j.bbagrm.2015.12.002. Epub 2015 Dec 13.
H1 linker histones are key chromatin architectural proteins facilitating the formation of higher order chromatin structures. The H1 family constitutes the most heterogeneous group of histone proteins, with eleven non-allelic H1 variants in mammals. H1 variants differ in their biochemical properties and exhibit significant sequence divergence from one another, yet most of them are highly conserved during evolution from mouse to human. H1 variants are differentially regulated during development and their cellular compositions undergo dramatic changes in embryogenesis, gametogenesis, tissue maturation and cellular differentiation. As a group, H1 histones are essential for mouse development and proper stem cell differentiation. Here we summarize our current knowledge on the expression and functions of H1 variants in mammalian development and stem cell differentiation. Their diversity, sequence conservation, complex expression and distinct functions suggest that H1s mediate chromatin reprogramming and contribute to the large variations and complexity of chromatin structure and gene expression in the mammalian genome.
H1连接组蛋白是促进高阶染色质结构形成的关键染色质结构蛋白。H1家族是组蛋白中最具异质性的群体,在哺乳动物中有11种非等位H1变体。H1变体在生化特性上存在差异,彼此之间表现出显著的序列差异,但它们中的大多数在从小鼠到人类的进化过程中高度保守。H1变体在发育过程中受到不同的调控,其细胞组成在胚胎发生、配子发生、组织成熟和细胞分化过程中发生显著变化。作为一个整体,H1组蛋白对小鼠发育和适当的干细胞分化至关重要。在这里,我们总结了目前关于H1变体在哺乳动物发育和干细胞分化中的表达和功能的知识。它们的多样性、序列保守性、复杂的表达和独特的功能表明,H1介导染色质重编程,并导致哺乳动物基因组中染色质结构和基因表达的巨大变化和复杂性。