首页> 美国卫生研究院文献>Molecular and Cellular Biology >The Nonessential H2A N-Terminal Tail Can Function as an Essential Charge Patch on the H2A.Z Variant N-Terminal Tail
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The Nonessential H2A N-Terminal Tail Can Function as an Essential Charge Patch on the H2A.Z Variant N-Terminal Tail

机译:非必需的H2A N终端尾巴可以充当H2A.Z变体N终端尾巴上的必需电荷补丁

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摘要

Tetrahymena thermophila cells contain three forms of H2A: major H2A.1 and H2A.2, which make up ∼80% of total H2A, and a conserved variant, H2A.Z. We showed previously that acetylation of H2A.Z was essential (Q. Ren and M. A. Gorovsky, Mol. Cell 7:1329-1335, 2001). Here we used in vitro mutagenesis of lysine residues, coupled with gene replacement, to identify the sites of acetylation of the N-terminal tail of the major H2A and to analyze its function in vivo. Tetrahymena cells survived with all five acetylatable lysines replaced by arginines plus a mutation that abolished acetylation of the N-terminal serine normally found in the wild-type protein. Thus, neither posttranslational nor cotranslational acetylation of major H2A is essential. Surprisingly, the nonacetylatable N-terminal tail of the major H2A was able to replace the essential function of the acetylation of the H2A.Z N-terminal tail. Tail-swapping experiments between H2A.1 and H2A.Z revealed that the nonessential acetylation of the major H2A N-terminal tail can be made to function as an essential charge patch in place of the H2A.Z N-terminal tail and that while the pattern of acetylation of an H2A N-terminal tail is determined by the tail sequence, the effects of acetylation on viability are determined by properties of the H2A core and not those of the N-terminal tail itself.
机译:四膜虫嗜热菌细胞含有三种形式的H2A:主要H2A.1和H2A.2,占总H2A的80%,以及一个保守的变体H2A.Z。以前我们证明了H2A.Z的乙酰化是必不可少的(Q. Ren和M.A. Gorovsky,分子细胞7:1329-1335,2001)。在这里,我们利用赖氨酸残基的体外诱变,结合基因置换,来鉴定主要H2A的N末端尾巴的乙酰化位点,并分析其在体内的功能。四膜虫细胞存活下来,所有五个乙酰化的赖氨酸都被精氨酸取代,而且突变消除了野生型蛋白中通常存在的N端丝氨酸的乙酰化。因此,主要H2A的翻译后或共翻译乙酰化都不是必需的。出人意料的是,主要H2A的不可乙酰化的N末端尾巴能够取代H2A.Z N末端的尾巴乙酰化的基本功能。 H2A.1和H2A.Z之间的尾巴交换实验表明,主要的H2A N末端尾巴的非必需乙酰化可以代替H2A.Z N末端尾巴用作必需的电荷补丁,而H2A N末端尾巴乙酰化的模式由尾部序列决定,乙酰化对生存力的影响由H2A核心而不是N末端尾巴本身的特性决定。

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