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Utilizing Targeted Mass Spectrometry to Demonstrate Asf1-Dependent Increases in Residue Specificity for Rtt109-Vps75 Mediated Histone Acetylation

机译:利用靶向质谱法来证明Rtt109-Vps75介导的组蛋白乙酰化的残基特异性的Asf1依赖性增加。

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摘要

In Saccharomyces cerevisiae, Rtt109, a lysine acetyltransferase (KAT), associates with a histone chaperone, either Vps75 or Asf1. It has been proposed that these chaperones alter the selectivity of Rtt109 or which residues it preferentially acetylates. In the present study, we utilized a label-free quantitative mass spectrometry-based method to determine the steady-state kinetic parameters of acetylation catalyzed by Rtt109-Vps75 on H3 monomer, H3/H4 tetramer, and H3/H4-Asf1 complex. These results show that among these histone conformations, only H3K9 and H3K23 are significantly acetylated under steady-state conditions and that Asf1 promotes H3/H4 acetylation by Rtt109-Vps75. Asf1 equally increases the Rtt109-Vps75 specificity for both of these residues with a maximum stoichiometry of 1:1 (Asf1 to H3/H4), but does not alter the selectivity between these two residues. These data suggest that the H3/H4-Asf1 complex is a substrate for Rtt109-Vps75 without altering selectivity between residues. The deletion of either Rtt109 or Asf1 in vivo results in the same reduction of H3K9 acetylation, suggesting that Asf1 is required for efficient H3K9 acetylation both in vitro and in vivo. Furthermore, we found that the acetylation preference of Rtt109-Vps75 could be directed to H3K56 when those histones already possess modifications, such as those found on histones purified from chicken erythrocytes. Taken together, Vps75 and Asf1 both enhance Rtt109 acetylation for H3/H4, although via different mechanisms, but have little impact on the residue selectivity. Importantly, these results provide evidence that histone chaperones can work together via interactions with either the enzyme or the substrate to more efficiently acetylate histones.
机译:在酿酒酵母中,赖氨酸乙酰基转移酶(KAT)Rtt109与组蛋白伴侣Vps75或Asf1相关。已经提出,这些分子伴侣改变Rtt109的选择性或其优先被乙酰化的残基。在本研究中,我们利用基于无标记定量质谱的方法来确定Rtt109-Vps75在H3单体,H3 / H4四聚体和H3 / H4-Asf1络合物上催化乙酰化的稳态动力学参数。这些结果表明,在这些组蛋白构象中,只有H3K9和H3K23在稳态条件下被显着乙酰化,而Asf1通过Rtt109-Vps75促进H3 / H4乙酰化。 Asf1以最大化学计量比1:1(从Asf1到H3 / H4)最大程度地提高了这两个残基的Rtt109-Vps75特异性,但没有改变这两个残基之间的选择性。这些数据表明,H3 / H4-Asf1复合物是Rtt109-Vps75的底物,而不会改变残基之间的选择性。体内Rtt109或Asf1的缺失会导致H3K9乙酰化的降低,这表明在体外和体内有效的H3K9乙酰化都需要Asf1。此外,我们发现,当那些组蛋白已经具有修饰,例如在从鸡红细胞纯化的组蛋白上发现的那些修饰时,Rtt109-Vps75的乙酰化偏好可能针对H3K56。两者合计,虽然通过不同的机制,Vps75和Asf1均可增强H3 / H4的Rtt109乙酰化作用,但对残基选择性的影响很小。重要的是,这些结果提供了证据,表明组蛋白伴侣可以通过与酶或底物的相互作用而协同工作,从而更有效地乙酰化组蛋白。

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