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芳香族残基决定富含嘌呤元件结合蛋白B的转录抑制和单链DNA结合活性。

Aromatic Residues Dictate the Transcriptional Repressor and Single-Stranded DNA Binding Activities of Purine-Rich Element Binding Protein B.

作者信息

Foote Andrea T, Kelm Robert J

机构信息

Department of Medicine, University of Vermont, Larner College of Medicine, Burlington, Vermont 05405, United States.

Department of Biochemistry, University of Vermont, Larner College of Medicine, Burlington, Vermont 05405, United States.

出版信息

Biochemistry. 2023 Sep 5;62(17):2597-2610. doi: 10.1021/acs.biochem.3c00204. Epub 2023 Aug 9.

Abstract

Purine-rich element binding protein B (Purβ) is a single-stranded DNA (ssDNA) and RNA-binding protein that functions as a transcriptional repressor of genes encoding certain muscle-restricted contractile proteins in the setting of cellular stress or tissue injury. A prior report from our laboratory implicated specific basic amino acid residues in the physical and functional interaction of Purβ with the smooth muscle-α actin gene () promoter. Independent structural analysis of fruit fly Purα uncovered a role for several aromatic residues in the binding of this related protein to ssDNA. Herein, we examine the functional importance of a comparable set of hydrophobic residues that are positionally conserved in the repeat I (Y59), II (F155), and III (F256) domains of murine Purβ. Site-directed Y/F to alanine substitutions were engineered, and the resultant Purβ point mutants were tested in various biochemical and cell-based assays. None of the mutations affected the cellular expression, structural stability, or dimerization capacity of Purβ. However, the Y59A and F155A mutants demonstrated weaker repressor activity in transfected fibroblasts and reduced binding affinity for the purine-rich strand of an cis-regulatory element . Mutation of Y59 and F155 also altered the multisite binding properties of Purβ for ssDNA and diminished the interaction of Purβ with Y-box binding protein 1, a co-repressor of . Collectively, these findings suggest that some of the same aromatic residues, which govern the specific and high-affinity binding of Purβ to ssDNA, also mediate certain heterotypic protein interactions underlying the repressor function of Purβ.

摘要

富含嘌呤元件结合蛋白B(Purβ)是一种单链DNA(ssDNA)和RNA结合蛋白,在细胞应激或组织损伤情况下,它作为某些肌肉限制性收缩蛋白编码基因的转录抑制因子发挥作用。我们实验室之前的一份报告表明,Purβ与平滑肌α肌动蛋白基因()启动子的物理和功能相互作用中存在特定的碱性氨基酸残基。对果蝇Purα的独立结构分析发现,几个芳香族残基在这种相关蛋白与ssDNA的结合中起作用。在此,我们研究了小鼠Purβ的重复序列I(Y59)、II(F155)和III(F256)结构域中位置保守的一组类似疏水残基的功能重要性。设计了定点的Y/F到丙氨酸的替换,并在各种生化和基于细胞的试验中测试了所得的Purβ点突变体。这些突变均未影响Purβ的细胞表达、结构稳定性或二聚化能力。然而,Y59A和F155A突变体在转染的成纤维细胞中表现出较弱的抑制活性,并且对顺式调控元件的富含嘌呤链的结合亲和力降低。Y59和F155的突变也改变了Purβ对ssDNA的多位点结合特性,并减少了Purβ与Y盒结合蛋白1(一种的共抑制因子)的相互作用。总的来说,这些发现表明,一些相同的芳香族残基既决定了Purβ与ssDNA的特异性和高亲和力结合,也介导了Purβ抑制功能背后的某些异型蛋白相互作用。

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