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组蛋白H2A亚型在体内可与组蛋白H2B亚型互换结合。

Histone H2A subtypes associate interchangeably in vivo with histone H2B subtypes.

作者信息

Kolodrubetz D, Rykowski M C, Grunstein M

出版信息

Proc Natl Acad Sci U S A. 1982 Dec;79(24):7814-8. doi: 10.1073/pnas.79.24.7814.

Abstract

The yeast Saccharomyces cerevisiae contains two primary sequence subtypes of histone H2B (H2B1 and H2B2) and of H2A (H2A1 and H2A2). Mutants in each of the H2B subtypes have been used to show previously that yeast cells lacking one or the other, but not both, of the H2B proteins are viable. Because H2A protein interacts in the nucleosome with H2B, we wished to determine whether specific H2A subtypes must interact with specific H2B subtypes. We describe experiments in which frameshift mutations were introduced into both of the H2A genes in vitro and the mutant genes integrated into the yeast genome, replacing the wild-type H2A genes by a subsequent recombination. Using these mutant (hta1- and hta2-) strains we find that neither H2A gene has a unique essential function during any phase of the yeast life cycle, although strains homozygous for hta1- grow more slowly. However, one functional H2A gene is required for viability because cells mutant in both H2A genes arrest at spore germination prior to bud separation. By combining these H2A mutations with the H2B mutations obtained previously, we show that all combinations of H2A and H2B subtypes produce viable cells. From these genetic experiments and electrophoretic analysis of the histone proteins of these mutants we conclude that the H2A subtypes can associate interchangeably with the H2B subtypes.

摘要

酿酒酵母含有两种组蛋白H2B(H2B1和H2B2)以及两种组蛋白H2A(H2A1和H2A2)的主要序列亚型。此前已利用每种H2B亚型的突变体证明,缺乏其中一种而非两种H2B蛋白的酵母细胞是有活力的。由于H2A蛋白在核小体中与H2B相互作用,我们希望确定特定的H2A亚型是否必须与特定的H2B亚型相互作用。我们描述了一些实验,在体外将移码突变引入两个H2A基因,并将突变基因整合到酵母基因组中,随后通过重组取代野生型H2A基因。利用这些突变(hta1 -和hta2 -)菌株,我们发现,在酵母生命周期的任何阶段,两个H2A基因都没有独特的必需功能,尽管hta1 -纯合的菌株生长较慢。然而,细胞存活需要一个有功能的H2A基因,因为两个H2A基因均突变的细胞在芽分离之前的孢子萌发阶段停滞。通过将这些H2A突变与之前获得的H2B突变相结合,我们表明H2A和H2B亚型的所有组合都能产生有活力的细胞。从这些遗传学实验以及对这些突变体组蛋白的电泳分析中,我们得出结论,H2A亚型可以与H2B亚型互换结合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/33d4/347439/f1d20a0cd982/pnas00463-0214-a.jpg

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