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肌醇磷酸和 Sin3L/Rpd3L 组蛋白去乙酰化酶 (HDAC) 复合物的核心亚基上调去乙酰化酶活性。

Inositol phosphates and core subunits of the Sin3L/Rpd3L histone deacetylase (HDAC) complex up-regulate deacetylase activity.

机构信息

Department of Molecular Biosciences, Northwestern University, Evanston, Illinois 60208-3500.

Department of Molecular Biosciences, Northwestern University, Evanston, Illinois 60208-3500

出版信息

J Biol Chem. 2019 Sep 20;294(38):13928-13938. doi: 10.1074/jbc.RA119.009780. Epub 2019 Jul 29.

Abstract

The constitutively nuclear histone deacetylases (HDACs) 1, 2, and 3 erase acetyl marks on acetyllysine residues, alter the landscape of histone modifications, and modulate chromatin structure and dynamics and thereby crucially regulate gene transcription in higher eukaryotes. Nuclear HDACs exist as at least six giant multiprotein complexes whose nonenzymatic subunits confer genome targeting specificity for these enzymes. The deacetylase activity of HDACs has been shown previously to be enhanced by inositol phosphates, which also bridge the catalytic domain in protein-protein interactions with SANT (Swi3, Ada2, N-Cor, and TFIIIB) domains in all HDAC complexes except those that contain the Sin3 transcriptional corepressors. Here, using purified recombinant proteins, coimmunoprecipitation and HDAC assays, and pulldown and NMR experiments, we show that HDAC1/2 deacetylase activity in one of the most ancient and evolutionarily conserved Sin3L/Rpd3L complexes is inducibly up-regulated by inositol phosphates but involves interactions with a zinc finger motif in the Sin3-associated protein 30 (SAP30) subunit that is structurally unrelated to SANT domains, indicating convergent evolution at the functional level. This implies that this mode of regulation has evolved independently multiple times and provides an evolutionary advantage. We also found that constitutive association with another core subunit, Rb-binding protein 4 chromatin-binding factor (RBBP4), further enhances deacetylase activity, implying both inducible and constitutive regulatory mechanisms within the same HDAC complex. Our results indicate that inositol phosphates stimulate HDAC activity and that the SAP30 zinc finger motif performs roles similar to that of the unrelated SANT domain in promoting the SAP30-HDAC1 interaction and enhancing HDAC activity.

摘要

组成型核组蛋白去乙酰化酶(HDACs)1、2 和 3 可消除乙酰赖氨酸残基上的乙酰标记,改变组蛋白修饰的景观,并调节染色质结构和动力学,从而在高等真核生物中关键地调节基因转录。核 HDACs 至少存在六种巨型多蛋白复合物,其非酶亚基赋予这些酶对基因组的靶向特异性。先前已经表明,HDAC 的去乙酰化酶活性可被肌醇磷酸盐增强,肌醇磷酸盐还可在蛋白-蛋白相互作用中桥接催化结构域,与所有 HDAC 复合物中的 SANT(Swi3、Ada2、N-Cor 和 TFIIIB)结构域结合,除了那些含有 Sin3 转录核心抑制剂的复合物。在这里,我们使用纯化的重组蛋白、共免疫沉淀和 HDAC 测定、下拉和 NMR 实验,表明在最古老和进化上最保守的 Sin3L/Rpd3L 复合物之一中,HDAC1/2 去乙酰化酶活性可被肌醇磷酸盐诱导上调,但涉及与 Sin3 相关蛋白 30(SAP30)亚基中的锌指基序相互作用,该基序在结构上与 SANT 结构域无关,表明在功能水平上具有趋同进化。这意味着这种调节模式已经独立进化了多次,并提供了进化优势。我们还发现,与另一个核心亚基 Rb 结合蛋白 4 染色质结合因子(RBBP4)的组成型结合进一步增强了去乙酰化酶活性,这意味着在同一个 HDAC 复合物中存在诱导和组成型调节机制。我们的研究结果表明,肌醇磷酸盐可刺激 HDAC 活性,并且 SAP30 锌指基序发挥与不相关的 SANT 结构域相似的作用,促进 SAP30-HDAC1 相互作用并增强 HDAC 活性。

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