Doenecke D, Albig W, Bouterfa H, Drabent B
Georg August Universität Göttingen, Institut für Biochemie und Molekulare Zellbiologie, Germany.
J Cell Biochem. 1994 Apr;54(4):423-31. doi: 10.1002/jcb.240540409.
The H1 family is the most divergent subgroup of the highly conserved class of histone proteins [Cole: Int J Pept Protein Res 30:433-449, 1987]. In several vertebrate species, the H1 complement comprises five or more subtypes, and tissue specific patterns of H1 histones have been described. The diversity of the H1 histone family raises questions about the functions of different H1 subtypes and about the differential control of expression of their genes. The expression of main type H1 genes is coordinated with DNA replication, whereas the regulation of synthesis of replacement H1 subtypes, such as H1 zero and H5, and the testis specific H1t appears to be more complex. The differential control of H1 gene expression is reflected in the chromosomal organization of the genes and in different promoter structures. This review concentrates on a comparison of the chromosomal organization of main type and replacement H1 histone genes and on the differential regulation of their expression. General structural and functional data, which apply to both H1 and core histone genes and which are covered by recent reviews, will not be discussed in detail.
H1家族是高度保守的组蛋白类中差异最大的亚组[科尔:《国际肽与蛋白质研究杂志》30:433 - 449,1987年]。在几种脊椎动物物种中,H1补体包含五种或更多亚型,并且已经描述了H1组蛋白的组织特异性模式。H1组蛋白家族的多样性引发了关于不同H1亚型功能以及其基因表达差异调控的问题。主要类型H1基因的表达与DNA复制协调一致,而替代H1亚型(如H1零和H5)以及睾丸特异性H1t的合成调控似乎更为复杂。H1基因表达的差异调控反映在基因的染色体组织和不同的启动子结构中。本综述集中于主要类型和替代H1组蛋白基因的染色体组织比较以及它们表达的差异调控。适用于H1和核心组蛋白基因且近期综述已涵盖的一般结构和功能数据,将不再详细讨论。