The central histone H3/H4 chaperone Asf1 comprises a highly conserved globular core and a divergent C-terminal tail. While the function and structure of the Asf1 core are well known, the function of the tail is less well understood. Here, we have explored the role of the yeast (yAsf1) and human (hAsf1a and hAsf1b) Asf1 tails in Saccharomyces cerevisiae. We show, using a photoreactive, unnatural amino acid, that Asf1 tail residue 210 cross-links to histone H3 in vivo and, further, that loss of C-terminal tail residues 211 to 279 weakens yAsf1-histone binding affinity in vitro nearly 200-fold. Via several yAsf1 C-terminal truncations and yeast-human chimeric proteins, we found that truncations at residue 210 increase transcriptional silencing and that the hAsf1a tail partially substitutes for full-length yAsf1 with respect to silencing but that full-length hAsf1b is a better overall substitute for full-length yAsf1. In addition, we show that the C-terminal tail of Asf1 is phosphorylated at T270 in yeast. Loss of this phosphorylation site does not prevent coimmunoprecipitation of yAsf1 and Rad53 from yeast extracts, whereas amino acid residue substitutions at the Asf1-histone H3/H4 interface do. Finally, we show that residue substitutions in yAsf1 near the CAF-1/HIRA interface also influence yAsf1's function in silencing.

译文

中央组蛋白H3/H4伴侣Asf1包含高度保守的球状核和发散的C末端尾巴。虽然Asf1核心的功能和结构是众所周知的,但尾部的功能却知之甚少。在这里,我们探索了酵母 (yAsf1) 和人 (hAsf1a和hAsf1b) Asf1尾巴在酿酒酵母中的作用。我们显示,使用光反应性的非天然氨基酸,Asf1尾残基在体内与组蛋白H3 210交联,并且进一步地,与279 211的C末端尾残基的丢失在体外削弱了yAsf1-histone结合亲和力近200倍。通过几种yAsf1 C末端截短和酵母-人嵌合蛋白,我们发现残基处的截短210增加转录沉默,并且hAsf1a尾巴在沉默方面部分替代了全长yAsf1,但是全长hAsf1b是全长yAsf1的更好的整体替代品。此外,我们显示了酵母中Asf1的C末端尾部在T270处被磷酸化。该磷酸化位点的丢失并不能阻止酵母提取物中yAsf1和Rad53的共免疫沉淀,而Asf1-histone H3/H4界面处的氨基酸残基取代则可以。最后,我们表明yAsf1中CAF-1/HIRA界面附近的残基取代也会影响yAsf1的沉默功能。

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