了解微生物脂肪酶的结构特征——综述。

John Geraldine Sandana Mala, Satoru Takeuchi
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引用次数: 42

摘要

自20世纪80年代以来,微生物脂肪酶的结构阐明一直是主要的兴趣。结构特征知识在为特定目的设计和工程脂肪酶时起着重要作用。目前已有少数微生物脂肪酶的重要结构数据,但仍存在结构缺陷,即大多数脂肪酶的结构尚未得到解决。在RCSB蛋白质数据库(http://www.rcsb.org/pdb/)中搜索“脂肪酶结构”只返回93条(截至2007年9月),NCBI数据库(http://www.ncbi.nlm.nih.gov)报告了89条脂肪酶结构,而核心核苷酸记录为14719条。因此,研究微生物脂肪酶的结构分析是值得考虑的。本综述旨在提供有关结构分析的仪器、化学和生物信息学方法的资源集合。x射线晶体学是结构生物化学家的一种通用工具,一直被利用至今。最近的化学方法包括分子建模和组合设计。随着无数工具的出现,生物信息学对蛋白质结构分析产生了极大的兴趣。此外,迄今为止研究的结构阐明的文献平台已经提出了适用于微生物脂肪酶的详细描述。还讨论了假丝酵母脂肪酶(CRL)的一个案例研究,该研究突出了大多数脂肪酶共同的重要结构特征。对脂肪酶的概况进行了生动的描述,并对过去脂肪酶的研究进行了综述。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Understanding structural features of microbial lipases--an overview.

Understanding structural features of microbial lipases--an overview.

Understanding structural features of microbial lipases--an overview.

The structural elucidations of microbial lipases have been of prime interest since the 1980s. Knowledge of structural features plays an important role in designing and engineering lipases for specific purposes. Significant structural data have been presented for few microbial lipases, while, there is still a structure-deficit, that is, most lipase structures are yet to be resolved. A search for 'lipase structure' in the RCSB Protein Data Bank (http://www.rcsb.org/pdb/) returns only 93 hits (as of September 2007) and, the NCBI database (http://www.ncbi.nlm.nih.gov) reports 89 lipase structures as compared to 14719 core nucleotide records. It is therefore worthwhile to consider investigations on the structural analysis of microbial lipases. This review is intended to provide a collection of resources on the instrumental, chemical and bioinformatics approaches for structure analyses. X-ray crystallography is a versatile tool for the structural biochemists and is been exploited till today. The chemical methods of recent interests include molecular modeling and combinatorial designs. Bioinformatics has surged striking interests in protein structural analysis with the advent of innumerable tools. Furthermore, a literature platform of the structural elucidations so far investigated has been presented with detailed descriptions as applicable to microbial lipases. A case study of Candida rugosa lipase (CRL) has also been discussed which highlights important structural features also common to most lipases. A general profile of lipase has been vividly described with an overview of lipase research reviewed in the past.

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