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挖掘基因组:将修饰和未修饰肽段的串联质谱与核苷酸数据库中的序列相关联。

Mining genomes: correlating tandem mass spectra of modified and unmodified peptides to sequences in nucleotide databases.

作者信息

Yates J R, Eng J K, McCormack A L

机构信息

Department of Molecular Biotechnology, University of Washington, Seattle 98195-7730, USA.

出版信息

Anal Chem. 1995 Sep 15;67(18):3202-10. doi: 10.1021/ac00114a016.

Abstract

The correlation of uninterpreted tandem mass spectra of modified and unmodified peptides, produced under low-energy (10-50 eV) collision conditions, with nucleotide sequences is demonstrated. In this method nucleotide databases are translated in six reading frames, and the resulting amino acid sequences are searched "on the fly" to identify and fit linear sequences to the fragmentation patterns observed in the tandem mass spectra of peptides. A cross-correlation function is then used to provide a measurement of similarity between the mass-to-charge ratios for the fragment ions predicted by amino acid sequences translated from the nucleotide database and the fragment ions observed in the tandem mass spectrum. In general, a difference greater than 0.1 between the normalized cross-correlation functions for the first- and second-ranked search results indicates a successful match between sequence and spectrum. Measurements of the deviation from maximum similarity employing the spectral reconstruction method are made. The search method employing nucleotide databases is also demonstrated on the spectra of phosphorylated peptides. Specific sites of modification are identified even though no specific information relevant to sites of modification is contained in the character-based sequence information of nucleotide databases.

摘要

在低能量(10 - 50电子伏特)碰撞条件下产生的修饰肽段和未修饰肽段的未解析串联质谱与核苷酸序列之间的相关性得到了证明。在该方法中,核苷酸数据库在六个阅读框中进行翻译,并且对所得的氨基酸序列进行“实时”搜索,以识别线性序列并使其与肽段串联质谱中观察到的碎裂模式相匹配。然后使用互相关函数来衡量由核苷酸数据库翻译的氨基酸序列预测的碎片离子的质荷比与串联质谱中观察到的碎片离子之间的相似性。一般来说,排名第一和第二的搜索结果的归一化互相关函数之间的差异大于0.1表明序列与质谱成功匹配。采用光谱重建方法对与最大相似性的偏差进行了测量。利用核苷酸数据库的搜索方法也在磷酸化肽段的质谱上得到了验证。即使核苷酸数据库基于字符的序列信息中不包含与修饰位点相关的特定信息,也能识别出特定的修饰位点。

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