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“Zero-length” cross-linking in solid state as an approach for analysis of protein–protein interactions

机译:固态“零长度”交联作为分析蛋白质间相互作用的一种方法

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摘要

We have developed a new approach for the analysis of interacting interfaces in protein complexes and protein quaternary structure based on cross-linking in the solid state. Protein complexes are freeze-dried under vacuum, and cross-links are introduced in the solid phase by dehydrating the protein in a nonaqueous solvent creating peptide bonds between amino and carboxyl groups of the interacting peptides. Cross-linked proteins are digested into peptides with trypsin in both H216O and H218O and then readily distinguished in mass spectra by characteristic 8 atomic mass unit (amu) shifts reflecting incorporation of two 18O atoms into each C terminus of proteolytic peptides. Computer analysis of mass spectrometry (MS) and MS/MS data is used to identify the cross-linked peptides. We demonstrated specificity and reproducibility of our method by cross-linking homo-oligomeric protein complexes of glutathione-S-transferase (GST) from Schistosoma japonicum alone or in a mixture of many other proteins. Identified cross-links were predominantly of amide origin, but six esters and thioesters were also found. The cross-linked peptides were validated against the GST monomer and dimer X-ray structures and by experimental (MS/MS) analyses. Some of the identified cross-links matched interacting peptides in the native 3D structure of GST, indicating that the structure of GST and its oligomeric complex remained primarily intact after freeze-drying. The pattern of oligomeric GST obtained in solid state was the same as that obtained in solution by Ru (II) Bpy32+ catalyzed, oxidative “zero-length” cross-linking, confirming that it is feasible to use our strategy for analyzing the molecular interfaces of interacting proteins or peptides.
机译:我们已经开发了一种基于固态交联的蛋白质复合物和蛋白质四级结构相互作用界面分析的新方法。蛋白质复合物在真空下冷冻干燥,并通过在非水溶剂中使蛋白质脱水将交联引入固相,从而在相互作用的肽的氨基和羧基之间形成肽键。在H216O和H218O中,都用胰蛋白酶将交联的蛋白质消化成肽,然后在质谱中通过特征性的8原子质量单位(amu)位移来区分,这反映了两个18O原子结合到蛋白水解肽的每个C末端。质谱(MS)和MS / MS数据的计算机分析用于鉴定交联的肽。我们通过交联日本血吸虫的谷胱甘肽-S-转移酶(GST)的同聚低聚蛋白复合物,或在许多其他蛋白的混合物中,证明了我们方法的特异性和可重复性。鉴定出的交联主要来自酰胺,但是也发现了六种酯和硫代酯。交联的肽针对GST单体和二聚体X射线结构进行了验证,并通过实验(MS / MS)分析进行了验证。在GST的天然3D结构中,某些鉴定出的交联匹配了相互作用的肽,这表明GST及其寡聚复合物的结构在冷冻干燥后仍基本保持完整。固态获得的低聚GST的模式与Ru(II)Bpy32 +催化的氧化性“零长度”交联在溶液中获得的模式相同,这证实了使用我们的策略分析分子间的GST的策略是可行的。相互作用的蛋白质或肽。

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