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论蛋白质模块的分类与进化

On the classification and evolution of protein modules.

作者信息

Hegyi H, Bork P

机构信息

EMBL, Heidelberg, Germany.

出版信息

J Protein Chem. 1997 Jul;16(5):545-51. doi: 10.1023/a:1026382032119.

Abstract

Our efforts to classify the functional units of many proteins, the modules, are reviewed. The data from the sequencing projects for various model organisms are extremely helpful in deducing the evolution of proteins and modules. For example, a dramatic increase of modular proteins can be observed from yeast to C. elegans in accordance with new protein functions that had to be introduced in multicellular organisms. Our sequence characterization of modules relies on sensitive similarity search algorithms and the collection of multiple sequence alignments for each module. To trace the evolution of modules and to further automate the classification, we have developed a sequence and a module alerting system that checks newly arriving sequence data for the presence of already classified modules. Using these systems, we were able to identify an unexpected similarity between extracellular C1Q modules with bacterial proteins.

摘要

我们对许多蛋白质的功能单元即模块进行分类的工作进行了综述。来自各种模式生物测序项目的数据对于推断蛋白质和模块的进化极为有用。例如,从酵母到秀丽隐杆线虫,可以观察到模块化蛋白质急剧增加,这与多细胞生物中必须引入的新蛋白质功能相一致。我们对模块的序列特征分析依赖于灵敏的相似性搜索算法以及每个模块的多序列比对集合。为了追踪模块的进化并进一步实现分类自动化,我们开发了一个序列和模块警报系统,该系统会检查新到达的序列数据中是否存在已分类的模块。利用这些系统,我们能够识别出细胞外C1Q模块与细菌蛋白质之间意想不到的相似性。

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