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组蛋白H3的N端突变可在体内使酵母GAL1基因过度激活。

Histone H3 N-terminal mutations allow hyperactivation of the yeast GAL1 gene in vivo.

作者信息

Mann R K, Grunstein M

机构信息

Molecular Biology Institute, University of California, Los Angeles 90024.

出版信息

EMBO J. 1992 Sep;11(9):3297-306. doi: 10.1002/j.1460-2075.1992.tb05408.x.

Abstract

Recent work has shown that the yeast histone H4 N-terminus, while not essential for viability, is required for repression of the silent mating loci and activation of GAL1 and PHO5 promoters. Because histone H3 shares many structural features with histone H4 and is intimately associated with H4 in the assembled nucleosome, we asked whether H3 has similar functions. While the basic N-terminal domain of H3 is found to be non-essential (deletion of residues 4-40 of this 135 amino acid protein allows viability), its removal has only a minor effect on mating. Surprisingly, both deletions (of residues 4-15) and acetylation site substitutions (at residues 9, 14 and 18) within the N-terminus of H3 allow hyperactivation of the GAL1 promoter as well as a number of other GAL4-regulated genes including GAL2, GAL7 and GAL10. To a limited extent glucose repression is also alleviated by H3 N-terminal deletions. Expression of another inducible promoter, PHO5, is shown to be relatively unaffected. We conclude that the H3 and H4 N-termini have different functions in both the repression of the silent mating loci and in the regulation of GAL1.

摘要

最近的研究表明,酵母组蛋白H4的N端虽然对细胞存活不是必需的,但对于沉默交配型基因座的抑制以及GAL1和PHO5启动子的激活是必需的。由于组蛋白H3与组蛋白H4具有许多结构特征,并且在组装的核小体中与H4紧密相关,我们不禁要问H3是否具有类似的功能。虽然发现H3的碱性N端结构域并非必需(删除这个135个氨基酸的蛋白质的4-40位残基仍可存活),但其去除对交配的影响很小。令人惊讶的是,H3 N端的缺失(4-15位残基)和乙酰化位点替换(9、14和18位残基)都能使GAL1启动子以及包括GAL2、GAL7和GAL10在内的许多其他受GAL4调控的基因过度激活。在一定程度上,H3 N端缺失也能缓解葡萄糖阻遏。另一个可诱导启动子PHO5的表达相对不受影响。我们得出结论,H3和H4的N端在沉默交配型基因座的抑制以及GAL1的调控中具有不同的功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5d64/556864/5ad642e80499/emboj00094-0149-a.jpg

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