Chakraborty Joydeep, Jana Tanmoy, Saha Sudipto, Dutta Tapan K
Environ Microbiol Rep. 2014 Oct;6(5):519-23. doi: 10.1111/1758-2229.12182.
Bacterial Rieske-type aromatic ring-hydroxylating oxygenases (RHOs) constitute a large family of enzymes, primarily involved in bioremediation of diverse aromatic compounds in the environment. In the present study, we have designed a manually curated database, Ring-Hydroxylating Oxygenase database (RHObase), which provides comprehensive information on all biochemically characterized bacterial RHOs. It consists of ∼ 1000 entries including 196 oxygenase α-subunits, 153 oxygenase β-subunits, 92 ferredoxins and 110 reductases, distributed among 131 different bacterial strains implementing a total of 318 oxygenation reactions. For each protein, users can get detailed information about its structure and conserved domain(s) with motif signature. RHObase allows users to search a query, based on organism, oxygenase, substrate, or protein structure. In addition, this resource provides analysis tools to perform blast search against RHObase for prediction of putative substrate(s) for the query oxygenase and its phylogenetic affiliation. Furthermore, there is an integrated cheminformatics tool to search for structurally similar compound(s) in the database vis-a-vis RHO(s) capable of transforming those compound(s). Resources in the RHObase and multiple search/display options therein are intended to provide oxygenase-related requisite information to researchers, especially working in the field of environmental microbiology and biocatalysis to attain difficult chemistry of biotechnological importance.
细菌里氏型芳香环羟化加氧酶(RHOs)构成了一个庞大的酶家族,主要参与环境中多种芳香化合物的生物修复。在本研究中,我们设计了一个人工整理的数据库——环羟化加氧酶数据库(RHObase),它提供了所有经过生物化学表征的细菌RHOs的全面信息。该数据库包含约1000条记录,包括196个加氧酶α亚基、153个加氧酶β亚基、92个铁氧化还原蛋白和110个还原酶,分布在131种不同的细菌菌株中,总共进行318个氧化反应。对于每种蛋白质,用户可以获得有关其结构和带有基序特征的保守结构域的详细信息。RHObase允许用户根据生物体、加氧酶、底物或蛋白质结构进行查询搜索。此外,该资源提供分析工具,可针对RHObase进行blast搜索,以预测查询加氧酶的推定底物及其系统发育归属。此外,还有一个集成的化学信息学工具,用于在数据库中搜索与能够转化这些化合物的RHOs结构相似的化合物。RHObase中的资源及其多种搜索/显示选项旨在为研究人员,特别是从事环境微生物学和生物催化领域工作的研究人员提供与加氧酶相关的必要信息,以实现具有生物技术重要性的复杂化学反应。