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Solution structure of a novel zinc finger motif in the SAP30 polypeptide of the Sin3 corepressor complex and its potential role in nucleic acid recognition

机译:Sin3共抑物复合物的SAP30多肽中新型锌指基序的溶液结构及其在核酸识别中的潜在作用

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摘要

Giant chromatin-modifying complexes regulate gene transcription in eukaryotes by acting on chromatin substrates and ‘setting’ the histone code. The histone deacetylase (HDAC)-associated mammalian Sin3 corepressor complex regulates a wide variety of genes involved in all aspects of cellular physiology. The recruitment of the corepressor complex by transcription factors to specific regions of the genome is mediated by Sin3 as well as 10 distinct polypeptides that comprise the corepressor complex. Here we report the solution structure of a novel CCCH zinc finger (ZnF) motif in the SAP30 polypeptide, a key component of the corepressor complex. The structure represents a novel fold comprising two β-strands and two α-helices with the zinc organizing center showing remote resemblance to the treble clef motif. In silico analysis of the structure revealed a highly conserved surface that is dominated by basic residues. NMR-based analysis of potential ligands for the SAP30 ZnF motif indicated a strong preference for nucleic acid substrates. We propose that the SAP30 ZnF functions as a double-stranded DNA-binding motif, thereby expanding the known functions of both SAP30 and the mammalian Sin3 corepressor complex. Our results also call into question the common assumption about the exclusion of DNA-binding core subunits within chromatin-modifying/remodeling complexes.
机译:巨型染色质修饰复合物通过作用于染色质底物并“设置”组蛋白密码来调节真核生物中的基因转录。组蛋白脱乙酰基酶(HDAC)相关的哺乳动物Sin3心脏加压复合物可调节涉及细胞生理各方面的多种基因。 Sin3以及组成共表达复合物的10种不同多肽介导了转录因子将共表达复合物募集到基因组的特定区域。在这里,我们报告了SAP30多肽中的新型CCCH锌指(ZnF)基序的溶液结构,该多肽是corepressor复合物的关键成分。该结构代表了一种新颖的折叠结构,包括两个β链和两个α螺旋,锌的组织中心与三重谱号的基调非常相似。在计算机分析中,该结构显示出高度保守的表面,该表面以碱性残基为主。 SAP30 ZnF基序的潜在配体的基于NMR的分析表明,对核酸底物的强烈偏好。我们建议SAP30 ZnF充当双链DNA结合基序,从而扩展SAP30和哺乳动物Sin3心脏加压复合物的已知功能。我们的结果也质疑关于染色质修饰/重塑复合物中DNA结合核心亚基的排除的普遍假设。

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