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Structural insight into the separate roles of inositol tetraphosphate and deacetylase-activating domain in activation of histone deacetylase 3

机译:肌醇四磷酸和脱乙酰基酶激活域在组蛋白脱乙酰基酶3激活中的单独作用的结构见解

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摘要

Histone deacetylases (HDACs) repress transcription by deacetylating acetyllysines on specific histone tails. HDAC3 is implicated in neurodegenerative diseases, certain leukemias, and even in disrupting HIV-1 latency. A recent crystal structure of HDAC3 in complex with the deacetylase-activating domain (DAD) of its corepressor complex revealed an inositol tetraphosphate (IP4) molecule at the protein-protein interface. IP4 was shown to play an important, yet mechanistically ambiguous, role in the activity of HDAC3. The goal of this article is to explore the conformational ensemble of HDAC3 in its inactive apo state and in the presence of each or both of DAD and IP4. Using triplicate, 100 ns molecular dynamic simulations, we study the apo, ternary, and intermediate DAD-bound or IP4-bound HDAC3 states. We find that a population-shift effect is induced by the presence of each corepressor, and is most notable in the presence of both. Our results offer new insights into the change in dynamics necessary for the activation of HDAC3 and highlight the roles of IP4 and DAD in this process.
机译:组蛋白脱乙酰基酶(HDAC)通过使特定组蛋白尾巴上的乙酰赖氨酸脱乙酰基来抑制转录。 HDAC3与神经退行性疾病,某些白血病甚至破坏HIV-1潜伏期有关。 HDAC3的最新晶体结构与其共受体复合物的去乙酰化酶激活域(DAD)形成复合物,在蛋白质-蛋白质界面处显示了肌醇四磷酸(IP4)分子。 IP4被证明在HDAC3的活动中起着重要但机械上模棱两可的作用。本文的目的是探索处于非活动载脂蛋白状态且存在DAD和IP4或同时存在的情况下的HDAC3的构象整体。使用一式三份的100 ns分子动力学模拟,我们研究了载脂蛋白,三元和中间DAD结合或IP4结合的HDAC3状态。我们发现人口迁移效应是由每个corepressor的存在诱导的,并且在两者同时存在时最为显着。我们的结果为激活HDAC3所必需的动力学变化提供了新见解,并突出了IP4和DAD在此过程中的作用。

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