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对严格厌氧菌盲肠罗氏菌中一种在暴露于空气时会降解DNA的活性的表征。

Characterization of an activity from the strict anaerobe Roseburia cecicola that degrades DNA when exposed to air.

作者信息

O'Connor L T, Savage D C

机构信息

Department of Microbiology, University of Tennessee, Knoxville 37996.

出版信息

J Bacteriol. 1993 Aug;175(15):4681-7. doi: 10.1128/jb.175.15.4681-4687.1993.

Abstract

Roseburia cecicola is an obligately anaerobic bacterium that is extremely sensitive to oxygen. Genomic DNA isolated from cells exposed to air for even a brief period (< 5 min) is partially degraded, while DNA extracted from cells maintained in an anaerobic environment remains intact. Cells exposed to air for longer and longer periods yield DNA which is progressively degraded into fragments with decreasing sizes. Oxygen toxicity for this anaerobe appears to result, at least in part, from degradation of its genomic DNA. Cell lysates of the organism exhibited a similar ability to degrade exogenous sources of DNA when assayed in vitro under aerobic conditions. A substance that degrades both DNA and RNA when incubated aerobically was partially purified from such lysates. It has an approximate molecular weight of 2,800 and is unlikely to be a protein. It requires a reducing agent for activity and can be inhibited by catalase and peroxidase but not superoxide dismutase. The rate at which it degrades DNA in vitro can be enhanced by temperatures above 37 degrees C or by oxygen at partial pressures above atmospheric pressure. These results suggest that this substance degrades nucleic acids by a mechanism involving oxygen radicals.

摘要

盲肠罗氏菌是一种对氧气极为敏感的专性厌氧菌。从暴露于空气中哪怕很短时间(<5分钟)的细胞中分离出的基因组DNA会部分降解,而从维持在厌氧环境中的细胞中提取的DNA则保持完整。暴露于空气中时间越来越长的细胞产生的DNA会逐渐降解成尺寸越来越小的片段。这种厌氧菌的氧毒性似乎至少部分是由于其基因组DNA的降解所致。在有氧条件下进行体外测定时,该生物体的细胞裂解物表现出类似的降解外源DNA的能力。一种在有氧孵育时能降解DNA和RNA的物质从这种裂解物中得到了部分纯化。它的分子量约为2800,不太可能是一种蛋白质。它的活性需要一种还原剂,并且能被过氧化氢酶和过氧化物酶抑制,但不能被超氧化物歧化酶抑制。在体外,温度高于37摄氏度或氧气分压高于大气压时,它降解DNA的速率会加快。这些结果表明,这种物质通过一种涉及氧自由基的机制降解核酸。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5b8b/204919/4e44ad9c11d0/jbacter00057-0117-a.jpg

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