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Intrinsically disordered regions regulate both catalytic and non-catalytic activities of the MutLα mismatch repair complex

机译:本质上无序的区域调节MutLα错配修复复合物的催化和非催化活性

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Intrinsically disordered regions (IDRs) are present in at least 30% of the eukaryotic proteome and are enriched in chromatin-associated proteins. Using a combination of genetics, biochemistry and single-molecule biophysics, we characterize how IDRs regulate the functions of the yeast MutLα (Mlh1–Pms1) mismatch repair (MMR) complex. Shortening or scrambling the IDRs in both subunits ablates MMR in vivo. Mlh1–Pms1 complexes with shorter IDRs that disrupt MMR retain wild-type DNA binding affinity but are impaired for diffusion on both naked and nucleosome-coated DNA. Moreover, the IDRs also regulate the adenosine triphosphate hydrolysis and nuclease activities that are encoded in the structured N- and C-terminal domains of the complex. This combination of phenotypes underlies the catastrophic MMR defect seen with the mutant MutLα in vivo. More broadly, this work highlights an unanticipated multi-functional role for IDRs in regulating both facilitated diffusion on chromatin and nucleolytic processing of a DNA substrate.
机译:内在无序区(IDR)存在于至少30%的真核蛋白质组中,并富含染色质相关蛋白。结合遗传学,生物化学和单分子生物物理学,我们表征了IDR如何调节酵母MutLα(Mlh1-Pms1)错配修复(MMR)复合物的功能。缩短或加扰两个亚基中的IDR,可在体内消除MMR。具有较短IDR的Mlh1-Pms1复合物会破坏MMR,保留了野生型DNA结合亲和力,但在裸露和核小体包被的DNA上的扩散均受到损害。而且,IDR还调节在复合物的结构化N-和C-末端结构域中编码的三磷酸腺苷水解和核酸酶活性。表型的这种组合是突变体MutLα在体内所见的灾难性MMR缺陷的基础。更广泛地说,这项工作突显了IDR在调节染色质上的便利扩散和DNA底物的核酸分解加工方面具有意想不到的多功能作用。

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