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用于探测蛋白质表面拓扑结构的组合静电碰撞诱导解离化学交联试剂。

Combinatorial electrostatic collision-induced dissociative chemical cross-linking reagents for probing protein surface topology.

机构信息

Department of Molecular and Structural Biochemistry, North Carolina State University, Raleigh, North Carolina 27695-7622, USA.

出版信息

Anal Chem. 2010 Jul 15;82(14):6215-23. doi: 10.1021/ac101030w.

Abstract

To ascertain more information on protein domain orientation and complex structure associations using chemical cross-linking, we have developed a combination of electrostatic collision-induced dissociative cross-linking reagents that differentially react with protein surfaces which are effectively analyzed by liquid chromatography-tandem mass spectrometry using ion trap multistage collision-induced dissociation. Implementing our original design and methodology based on disuccinimidyl-succinamyl-aspartyl-proline (SuDP) (Soderblom, E. J.; Goshe, M. B. Anal. Chem 2006, 78, 8059-8068. Soderblom, E. J.; Bobay, B. G.; Cavanagh, J.; Goshe, M. B. Rapid Commun Mass Spectrom 2007, 21, 3395-3408.), disuccinimidyl-succinamyl-valyl-proline (SuVP) was synthesized. The SuDP and SuVP reagents are the same except for the valyl and aspartyl groups which provide a distinctive chemical feature to each reagent. When performing labeling reactions using various protein-to-cross-linker ratios at pH 7.5, the negatively charged SuDP and neutral SuVP were used to label bovine serum albumin and hemoglobin. After protein digestion, the resulting peptides were analyzed using four different ion trap LC/MS(3) acquisition methods incorporating multistage CID. The more polar BSA surface resulted in a number of unique interpeptide and intrapeptide cross-links for each reagent whereas the less polarized surface of hemoglobin produced similar results for both reagents. Based on the identification of dead-end products (i.e., a cross-link modification containing a hydrolyzed end) for each protein, the aminolysis reactivity of each modified lysyl side chain revealed a preference for reacting with each reagent according to its local electrostatic surface environment. Overall, combinatorial application of SuDP and SuVP chemical labeling produces a set of unique interpeptide, intrapeptide, and dead-end cross-linked products that provides protein structural information according to its electrostatic surface topology which has the potential to be used to more comprehensively probe protein structure and dynamics.

摘要

为了使用化学交联更确定地获得关于蛋白质结构域取向和复合物结构关联的信息,我们开发了一组静电碰撞诱导解离交联试剂的组合,这些试剂可与蛋白质表面有效反应,然后通过使用离子阱多阶段碰撞诱导解离的液相色谱-串联质谱进行有效分析。我们根据琥珀酰亚胺琥珀酰亚胺天冬氨酰脯氨酸(SuDP)(Soderblom,E.J.;Goshe,M.B. Anal.Chem.2006,78,8059-8068.Soderblom,E.J.;Bobay,B.G.;Cavanagh,J.;Goshe,M.B. Rapid Commun Mass Spectrom 2007,21,3395-3408.)的原始设计和方法学,合成了琥珀酰亚胺琥珀酰亚胺缬氨酰脯氨酸(SuVP)。SuDP 和 SuVP 试剂除了天冬氨酸和缬氨酸基团外完全相同,而天冬氨酸和缬氨酸基团为每个试剂提供了独特的化学特征。在 pH 7.5 下使用各种蛋白质与交联剂的比例进行标记反应时,使用带负电荷的 SuDP 和中性 SuVP 标记牛血清白蛋白和血红蛋白。蛋白质消化后,使用四种不同的离子阱 LC/MS(3)采集方法分析所得肽段,该方法包含多阶段 CID。更极性的 BSA 表面导致每个试剂的许多独特的肽间和肽内交联,而血红蛋白的较少极性表面对两种试剂产生相似的结果。基于每个蛋白质的末端产物(即,包含水解末端的交联修饰物)的鉴定,每个修饰赖氨酸侧链的氨解反应性根据其局部静电表面环境显示出与每个试剂反应的偏好。总体而言,SuDP 和 SuVP 化学标记的组合应用产生了一组独特的肽间、肽内和末端交联产物,根据其静电表面拓扑结构提供蛋白质结构信息,该信息有可能被用于更全面地探测蛋白质结构和动力学。

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