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使用无标记定量和高分辨率碎片离子光谱增强对零长度化学交联的鉴定。

Enhanced identification of zero-length chemical cross-links using label-free quantitation and high-resolution fragment ion spectra.

作者信息

Sriswasdi Sira, Harper Sandra L, Tang Hsin-Yao, Speicher David W

机构信息

Center for Systems and Computational Biology and Molecular and Cellular Oncogenesis Program, The Wistar Institute , 3601 Spruce Street, Philadelphia, Pennsylvania 19104, United States.

出版信息

J Proteome Res. 2014 Feb 7;13(2):898-914. doi: 10.1021/pr400953w. Epub 2014 Jan 7.

Abstract

Chemical cross-linking coupled to mass spectrometry provides structural information that is useful for probing protein conformations and providing experimental support for molecular models. "Zero-length" cross-links have greater value for these applications than longer cross-links because they provide more stringent distance constraints. However, this method is less commonly utilized because it cannot take advantage of isotopic labels, MS-labile bonds, or enrichment tags to facilitate identification. In this study, we combined label-free precursor ion quantitation and targeted tandem mass spectrometry with a new software tool, Zero-length Cross-link Miner (ZXMiner), to form a multitiered analysis strategy. A major, critical objective was to simultaneously achieve very high accuracy with essentially no false-positive cross-link identifications while maintaining a good depth of analysis. Our strategy was optimized on several proteins with known crystal structures. Comparison of ZXMiner to several existing cross-link analysis software showed that other algorithms detected less true positive cross-links and were far less accurate. Although prior use of zero-length cross-linking was typically restricted to small proteins, ZXMiner and the associated strategy enable facile analysis of very large protein complexes. This was demonstrated by identification of zero-length cross-links using purified 526 kDa spectrin heterodimers and intact red cell membranes and membrane skeletons.

摘要

化学交联与质谱联用可提供有助于探究蛋白质构象并为分子模型提供实验支持的结构信息。“零长度”交联在这些应用中比更长的交联具有更大的价值,因为它们提供了更严格的距离限制。然而,这种方法较少被使用,因为它无法利用同位素标记、质谱不稳定键或富集标签来促进鉴定。在本研究中,我们将无标记前体离子定量和靶向串联质谱与一种新的软件工具“零长度交联挖掘器(ZXMiner)”相结合,形成了一种多层分析策略。一个主要的关键目标是在基本没有假阳性交联鉴定的情况下同时实现非常高的准确性,同时保持良好的分析深度。我们的策略在几种具有已知晶体结构的蛋白质上进行了优化。将ZXMiner与几种现有的交联分析软件进行比较表明,其他算法检测到的真阳性交联较少且准确性远不如它。尽管零长度交联的先前应用通常仅限于小蛋白质,但ZXMiner和相关策略能够轻松分析非常大的蛋白质复合物。使用纯化的526 kDa血影蛋白异二聚体以及完整的红细胞膜和膜骨架鉴定零长度交联证明了这一点。

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