Maiolica Alessio, Cittaro Davide, Borsotti Dario, Sennels Lau, Ciferri Claudio, Tarricone Cataldo, Musacchio Andrea, Rappsilber Juri
FIRC Institute of Molecular Oncology Foundation, Via Adamello 16, 20139 Milan, Italy.
Mol Cell Proteomics. 2007 Dec;6(12):2200-11. doi: 10.1074/mcp.M700274-MCP200. Epub 2007 Oct 5.
Most protein complexes are inaccessible to high resolution structural analysis. We report the results of a combined approach of cross-linking, mass spectrometry, and bioinformatics to two human complexes containing large coiled-coil segments, the NDEL1 homodimer and the NDC80 heterotetramer. An important limitation of the cross-linking approach, so far, was the identification of cross-linked peptides from fragmentation spectra. Our novel approach overcomes the data analysis bottleneck of cross-linking and mass spectrometry. We constructed a purpose-built database to match spectra with cross-linked peptides, define a score that expresses the quality of our identification, and estimate false positive rates. We show that our analysis sheds light on critical structural parameters such as the directionality of the homodimeric coiled coil of NDEL1, the register of the heterodimeric coiled coils of the NDC80 complex, and the organization of a tetramerization region in the NDC80 complex. Our approach is especially useful to address complexes that are difficult in addressing by standard structural methods.
大多数蛋白质复合物难以进行高分辨率结构分析。我们报告了一种结合交联、质谱和生物信息学方法,用于研究两种含有大的卷曲螺旋片段的人类复合物——NDEL1同二聚体和NDC80异四聚体的结果。到目前为止,交联方法的一个重要局限性在于从碎片光谱中鉴定交联肽段。我们的新方法克服了交联和质谱数据分析的瓶颈。我们构建了一个专门的数据库,用于将光谱与交联肽段进行匹配,定义一个表示鉴定质量的分数,并估计假阳性率。我们表明,我们的分析揭示了关键的结构参数,如NDEL1同二聚体卷曲螺旋的方向性、NDC80复合物异二聚体卷曲螺旋的对齐方式以及NDC80复合物中四聚化区域的组织方式。我们的方法对于解决用标准结构方法难以研究的复合物特别有用。