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Structure-based inference of molecular functions of proteins of unknown function from Berkeley Structural Genomics Center

机译:伯克利结构基因组学中心基于未知功能的蛋白质分子功能的结构推断

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Advances in sequence genomics have resulted in an accumulation of a huge number of protein sequences derived from genome sequences. However, the functions of a large portion of them cannot be inferred based on the current methods of sequence homology detection to proteins of known functions. Three-dimensional structure can have an important impact in providing inference of molecular function (physical and chemical function) of a protein of unknown function. Structural genomics centers worldwide have been determining many 3-D structures of the proteins of unknown functions, and possible molecular functions of them have been inferred based on their structures. Combined with bioinformatics and enzymatic assay tools, the successful acceleration of the process of protein structure determination through high throughput pipelines enables the rapid functional annotation of a large fraction of hypothetical proteins. We present a brief summary of the process we used at the Berkeley Structural Genomics Center to infer molecular functions of proteins of unknown function.
机译:序列基因组学的发展已导致大量源自基因组序列的蛋白质序列的积累。然而,不能基于与已知功能的蛋白质的序列同源性检测的当前方法来推断其中很大一部分的功能。三维结构在推断功能未知的蛋白质的分子功能(物理和化学功能)方面可能具有重要的影响。世界各地的结构基因组学中心已经确定了功能未知的蛋白质的许多3-D结构,并根据其结构推断了其可能的分子功能。结合生物信息学和酶促分析工具,通过高通量管线成功加速了蛋白质结构确定过程,从而可以对大部分假想蛋白质进行快速功能注释。我们简要介绍了我们在伯克利结构基因组学中心用于推断功能未知蛋白质的分子功能的过程。

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