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DmsA双精氨酸基序的DmsD结合位点的热力学特征

Thermodynamic characterization of the DmsD binding site for the DmsA twin-arginine motif.

作者信息

Winstone Tara M L, Turner Raymond J

机构信息

Department of Biological Sciences, University of Calgary, 2500 University Drive Northwest, Calgary, AB, Canada T2N 1N4.

出版信息

Biochemistry. 2015 Mar 24;54(11):2040-51. doi: 10.1021/bi500891d. Epub 2015 Mar 10.

Abstract

The system specific chaperone DmsD interacts with the twin-arginine leader peptide of its substrate, DmsA, allowing for proper folding and assembly of the DmsA catalytic subunit of dimethyl sulfoxide reductase prior to translocation by the twin-arginine translocase. DmsD residues important for binding the complete 45-amino acid sequence of the DmsA leader (DmsAL) peptide were previously identified and found to cluster in a pocket of the DmsD structure. In this study, we have utilized isothermal titration calorimetry (ITC) to determine the dissociation constant and thermodynamic parameters of 15 single-substitution DmsD variant proteins and a synthetic DmsAL peptide consisting of 27 amino acids (DmsAL₁₅₋₄₁). The stoichiometry values were determined via ITC, and the multimeric compositions of the DmsD variants in the absence and presence of peptide were characterized via size exclusion chromatography and native polyacrylamide gel electrophoresis. An up to 4-fold change in affinity was observed for DmsD variant proteins relative to that of wild-type DmsD, and variation of the entropic contribution to binding divided the binding site into two clusters: residues with either more or less favorable entropy. Substitution of hydrophobic residues along one helix face (helix 5) or prolines found on adjacent loops caused reduced binding affinity because of the increased entropic cost, which suggests that the twin-arginine motif of the DmsAL peptide binds to a preformed site on DmsD. Most DmsD variants were more than 90% monomeric in solution and bound a single peptide per protein molecule. The DmsD variant with the largest dimer population showed increased affinity and induced the formation of tetramers in the presence of peptide, suggesting that dimeric DmsD or an alternatively folded form of DmsD may play an as yet undefined role in binding.

摘要

系统特异性伴侣蛋白DmsD与其底物DmsA的双精氨酸前导肽相互作用,使得二甲基亚砜还原酶的DmsA催化亚基在被双精氨酸转运酶转运之前能够正确折叠和组装。此前已鉴定出对结合DmsA前导肽(DmsAL)完整45个氨基酸序列至关重要的DmsD残基,并发现它们聚集在DmsD结构的一个口袋中。在本研究中,我们利用等温滴定量热法(ITC)测定了15种单取代DmsD变体蛋白与一种由27个氨基酸组成的合成DmsAL肽(DmsAL₁₅₋₄₁)的解离常数和热力学参数。通过ITC确定化学计量值,并通过尺寸排阻色谱法和天然聚丙烯酰胺凝胶电泳对有无肽存在时DmsD变体的多聚体组成进行表征。相对于野生型DmsD,观察到DmsD变体蛋白的亲和力有高达4倍的变化,结合熵贡献的变化将结合位点分为两个簇:熵有利程度不同的残基。沿一个螺旋面(螺旋5)的疏水残基或相邻环上的脯氨酸被取代会导致结合亲和力降低,因为熵成本增加,这表明DmsAL肽的双精氨酸基序与DmsD上的一个预先形成的位点结合。大多数DmsD变体在溶液中90%以上为单体,每个蛋白质分子结合一个肽。具有最大二聚体群体的DmsD变体显示出亲和力增加,并在有肽存在时诱导四聚体形成,这表明二聚体DmsD或DmsD的另一种折叠形式可能在结合中发挥尚未明确的作用。

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