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The University of Minnesota Biocatalysis/Biodegradation Database: specialized metabolism for functional genomics.

机译:明尼苏达大学生物催化/生物降解数据库:功能基因组学的专门代谢。

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摘要

The University of Minnesota Biocatalysis/Biodegradation Database (UM-BBD, http://www.labmed.umn.edu/umbbd/i nde x.html) first became available on the web in 1995 to provide information on microbial biocatalytic reactions of, and biodegradation pathways for, organic chemical compounds, especially those produced by man. Its goal is to become a representative database of biodegradation, spanning the diversity of known microbial metabolic routes, organic functional groups, and environmental conditions under which biodegradation occurs. The database can be used to enhance understanding of basic biochemistry, biocatalysis leading to speciality chemical manufacture, and biodegradation of environmental pollutants. It is also a resource for functional genomics, since it contains information on enzymes and genes involved in specialized metabolism not found in intermediary metabolism databases, and thus can assist in assigning functions to genes homologous to such less common genes. With information on >400 reactions and compounds, it is poised to become a resource for prediction of microbial biodegradation pathways for compounds it does not contain, a process complementary to predicting the functions of new classes of microbial genes.
机译:明尼苏达大学生物催化/生物降解数据库(UM-BBD,http://www.labmed.umn.edu/umbbd/inde x.html)于1995年首次在网络上开放,以提供有关以下微生物的生物催化反应的信息:以及有机化合物的生物降解途径,特别是人为产生的化合物。它的目标是成为一个具有代表性的生物降解数据库,涵盖已知微生物代谢途径,有机官能团和发生生物降解的环境条件的多样性。该数据库可用于增强对基本生物化学,导致特种化学品生产的生物催化和环境污染物生物降解的理解。它也是功能基因组学的资源,因为它包含有关在中间代谢数据库中找不到的专门代谢中涉及的酶和基因的信息,因此可以帮助将功能分配给与这种不太常见的基因同源的基因。利用有关> 400种反应和化合物的信息,它有望成为预测其不包含的化合物的微生物生物降解途径的资源,这一过程与预测新型微生物基因的功能互补。

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