Müller D R, Schindler P, Towbin H, Wirth U, Voshol H, Hoving S, Steinmetz M O
Functional Genomics, Novartis Pharma AG, Basel, Switzerland.
Anal Chem. 2001 May 1;73(9):1927-34. doi: 10.1021/ac001379a.
In protein interaction analysis, one promising method to identify the involved proteins and to characterize interacting sites at the same time is the mass spectrometric analysis of enzymatic hydrolysates of covalently cross-linked complexes. While protein identification can be accomplished by the methodology developed for proteome analysis, the unequivocal detection and characterization of cross-linked sites remained involved without selection criteria for linked peptides in addition to mass. To provide such criteria, we incorporated cross-links with a distinct isotope pattern into the microtubule-destabilizing protein Op18/stathmin (Op18) and into complexes formed by Op18 with tubulin. The deuterium-labeled cross-linking reagents bis(sulfosuccinimidyl)-glutarate-d4, -pimelate-d4, and -sebacate-d4 were prepared together with their undeuterated counterparts and applied as a 1:1 mixture of the respective d0 and d4 isotopomers. The resulting d0/d4 isotope tags allowed a straightforward mass spectrometric detection of peptides carrying the linker even in complex enzymatic protein hydrolysates. In the structure elucidation of the linked peptides by MS/MS, the assignment of the linked amino acids was again greatly facilitated by the d0/d4 tag. By applying two cross-linkers with similar reactivity but different spacer length in parallel, even doublets with very low intensity could be assigned with high confidence in MS and MS/MS spectra. Since in the Op18-tubulin complexes only a limited number of peptides carried the linker, the identification of the involved proteins per se was not impeded, thus accomplishing both protein identification and characterization of interacting sites in the same experiment. This novel methodology allowed us to significantly refine the current view of the complex between Op18 and tubulin corroborating the tubulin "capping" activity of the N-terminal domain of Op18.
在蛋白质相互作用分析中,一种有望同时鉴定所涉及蛋白质并表征相互作用位点的方法是对共价交联复合物的酶解产物进行质谱分析。虽然蛋白质鉴定可通过蛋白质组分析所开发的方法来完成,但除了质量之外,对于交联肽段缺乏选择标准的情况下,交联位点的明确检测和表征仍然存在困难。为了提供此类标准,我们将具有独特同位素模式的交联引入到微管解聚蛋白Op18/微管相关蛋白2(Op18)以及Op18与微管蛋白形成的复合物中。制备了氘标记的交联试剂双(磺基琥珀酰亚胺基)-戊二酸-d4、-庚二酸-d4和-癸二酸-d4及其未氘代的对应物,并以各自d0和d4同位素异构体的1:1混合物形式应用。所得的d0/d4同位素标签使得即使在复杂的酶促蛋白水解产物中也能直接通过质谱检测携带连接子的肽段。在通过串联质谱对连接肽段进行结构解析时,d0/d4标签再次极大地促进了连接氨基酸的归属。通过并行应用两种具有相似反应性但间隔长度不同的交联剂,即使是强度非常低的双峰也能在质谱和串联质谱谱图中以高可信度进行归属。由于在Op18-微管蛋白复合物中只有有限数量的肽段携带连接子,因此所涉及蛋白质本身的鉴定并未受到阻碍,从而在同一实验中实现了蛋白质鉴定和相互作用位点的表征。这种新方法使我们能够显著完善目前对Op18与微管蛋白之间复合物的认识,证实了Op18 N端结构域的微管蛋白“封端”活性。