Zardo G, Marenzi S, Caiafa P
Department of Biomedical Sciences and Technologies, University of L'Aquila, Italy.
Biol Chem. 1998 Jun;379(6):647-54.
This review aims to explain why H1 histone can be considered as a protein involved in protecting genomic DNA from full methylation. Some of our results indicated that, to explain the multiple roles in which H1 histone seems to be involved, it is important to consider that it is not a unique protein but a family of genetic somatic variants and that every one of them can be dynamically modified by different post-synthetic enzymatic modifications. Our data show that H1 histone plays an inhibitory effect on DNA methylation through its H1e variant and that poly(ADP-ribosyl)ation is a post-synthetic modification involved in this regulatory role. The idea that the poly(ADP-ribosyl)ated isoform of H1e could be present in decondensed chromatin structure, where the housekeeping genes are located, will be discussed.
本综述旨在解释为何H1组蛋白可被视为一种参与保护基因组DNA免受完全甲基化的蛋白质。我们的一些结果表明,为了解释H1组蛋白似乎涉及的多种作用,重要的是要考虑到它不是一种独特的蛋白质,而是一个遗传体细胞变体家族,并且它们中的每一个都可以通过不同的合成后酶促修饰进行动态修饰。我们的数据表明,H1组蛋白通过其H1e变体对DNA甲基化发挥抑制作用,并且聚(ADP-核糖基)化是参与这种调节作用的一种合成后修饰。将讨论H1e的聚(ADP-核糖基)化异构体可能存在于管家基因所在的解聚染色质结构中的观点。