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用于研究蛋白质三级和四级结构的鸟枪法交联分析

Shotgun cross-linking analysis for studying quaternary and tertiary protein structures.

作者信息

Lee Young Jin, Lackner Laura L, Nunnari Jodi M, Phinney Brett S

机构信息

Proteomics Core Facility, Genome Center, and Molecular and Cellular Biology, University of California, Davis 95616, USA.

出版信息

J Proteome Res. 2007 Oct;6(10):3908-17. doi: 10.1021/pr070234i. Epub 2007 Sep 14.

Abstract

We developed a new approach that employs a novel computer algorithm for the sensitive and high-throughput analysis of tertiary and quaternary interaction sites from chemically cross-linked proteins or multi-protein complexes. First, we directly analyze the digests of the chemically cross-linked proteins using only high-accuracy LC-MS/MS data. We analyze these data using a computer algorithm, we term X!Link, to find cross-links between two peptides. Our algorithm is rapid, taking only a few seconds to analyze approximately 5000 MS/MS spectra. We applied this algorithm to analyze cross-linked sites generated chemically using the amino specific reagent, BS3, in both cytochrome c and the mitochondrial division dynamin mutant, Dnm1G385D, which exists as a stable homodimer. From cytochrome c, a well-established test protein, we identified a total of 31 cross-links, 21 interpeptide and 10 intrapeptide cross-links, in 257 MS/MS spectra from a single LC-MS/MS data set. The high sensitivity of this technique is indicated by the fact that all 19 lysines in cytochrome c were detected as a cross-link product and 33% of all the Lys pairs within 20 A were also observed as a cross-link. Analysis of the cross-linked dimeric form of Dnm1G385D identified a total of 46 cross-links, 38 interpeptide and 8 intrapeptide cross-links, in 98 MS/MS spectra in a single LC-MS/MS data set. These results represent the most abundant cross-links identified in a single protein or protein dimer to date. Statistical analysis suggests a 1% false discovery rate after optimization of filtering parameters. Further analysis of the cross-links identified using our approach indicates that careful manual inspection is important for the correct assignment of cross-linking sites when multiple cross-linkable sites or several similar sequences exist. In summary, we have developed a sensitive MS-based approach to identify peptide-peptide cross-links that does not require isotopic labeling or comparison with non-cross-linked controls, making it faster and simpler than current methodologies.

摘要

我们开发了一种新方法,该方法采用一种新颖的计算机算法,用于对化学交联蛋白质或多蛋白复合物中的三级和四级相互作用位点进行灵敏且高通量的分析。首先,我们仅使用高精度液相色谱-串联质谱(LC-MS/MS)数据直接分析化学交联蛋白质的酶解产物。我们使用一种名为X!Link的计算机算法来分析这些数据,以找到两个肽段之间的交联。我们的算法速度很快,分析大约5000个MS/MS谱图仅需几秒钟。我们应用该算法分析了使用氨基特异性试剂BS3化学生成的交联位点,分析对象包括细胞色素c和线粒体分裂动力蛋白突变体Dnm1G385D,后者以稳定的同二聚体形式存在。从细胞色素c(一种成熟的测试蛋白)中,我们在单个LC-MS/MS数据集的257个MS/MS谱图中总共鉴定出31个交联,其中21个为肽间交联,10个为肽内交联。细胞色素c中所有19个赖氨酸都被检测为交联产物,并且在20埃范围内所有赖氨酸对中的33%也被观察到是交联,这一事实表明了该技术的高灵敏度。对Dnm1G385D的交联二聚体形式的分析在单个LC-MS/MS数据集的98个MS/MS谱图中总共鉴定出46个交联,其中38个为肽间交联,8个为肽内交联。这些结果代表了迄今为止在单个蛋白质或蛋白质二聚体中鉴定出的最丰富的交联。统计分析表明,在优化过滤参数后错误发现率为1%。使用我们的方法对鉴定出的交联进行进一步分析表明,当存在多个可交联位点或几个相似序列时,仔细的人工检查对于交联位点的正确归属很重要。总之,我们开发了一种基于质谱的灵敏方法来鉴定肽-肽交联,该方法不需要同位素标记或与非交联对照进行比较,比目前的方法更快、更简单。

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