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预测生物降解作用。

Predicting biodegradation.

作者信息

Wackett L P, Ellis L B

机构信息

Center for Biodegradation Research and Informatics, University of Minnesota, St Paul 55108, USA.

出版信息

Environ Microbiol. 1999 Apr;1(2):119-24.

PMID:11207727
Abstract

Biodegradation is important for natural and industrial cycling of environmental chemicals. Industries and government regulators increasingly seek to know the fate of chemicals in the environment and thus prevent potential negative impacts on human or ecosystem health. However, millions of organic compounds are known, and most will remain unstudied with respect to biodegradation. This necessitates the development of organized biodegradation information coupled with predictive methods. Biodegradation prediction methods are being developed using the information contained in the University of Minnesota Biocatalysis/ Biodegradation database. Heuristic rules are derived from compiled biodegradation information. Additional rules are generated by deconstructing compounds into a set of the 40 most common organic functional groups. The rules consist of deriving biochemically plausible catabolic reactions for each of the functional groups. More complex compounds, containing multiple functional groups, are analysed using higher order rules requiring prioritizing enzymatic attack and reactions cleaving functional groups. While biodegradation prediction, like weather prediction, will never be perfect, it can be an important tool for guiding industry, regulators and experimentalists.

摘要

生物降解对于环境化学品的自然循环和工业循环至关重要。企业和政府监管机构越来越希望了解化学品在环境中的归宿,从而预防对人类或生态系统健康的潜在负面影响。然而,已知的有机化合物有数百万种,而且大多数关于生物降解的研究仍未开展。这就需要开发有条理的生物降解信息以及预测方法。目前正在利用明尼苏达大学的生物催化/生物降解数据库中的信息来开发生物降解预测方法。启发式规则源自汇编的生物降解信息。通过将化合物解构为40个最常见的有机官能团,还能生成更多规则。这些规则包括为每个官能团推导生物化学上合理的分解代谢反应。对于含有多个官能团的更复杂化合物,则使用高阶规则进行分析,这些规则需要对酶促攻击和裂解官能团的反应进行优先级排序。虽然生物降解预测和天气预报一样,永远不会完美,但它可以成为指导企业、监管机构和实验人员的重要工具。

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引用本文的文献

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Computational framework for predictive biodegradation.预测生物降解的计算框架。
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The environmental fate of organic pollutants through the global microbial metabolism.有机污染物在全球微生物代谢作用下的环境归宿。
Mol Syst Biol. 2007;3:114. doi: 10.1038/msb4100156. Epub 2007 Jun 5.
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Risk mitigation of genetically modified bacteria and plants designed for bioremediation.用于生物修复的转基因细菌和植物的风险缓解。
J Ind Microbiol Biotechnol. 2005 Dec;32(11-12):639-50. doi: 10.1007/s10295-005-0242-1. Epub 2005 Jun 23.
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The University of Minnesota Biocatalysis/Biodegradation database: microorganisms, genomics and prediction.明尼苏达大学生物催化/生物降解数据库:微生物、基因组学与预测
Nucleic Acids Res. 2000 Jan 1;28(1):377-9. doi: 10.1093/nar/28.1.377.