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RecA蛋白与DNA相互作用的研究。

Studies of the interaction of RecA protein with DNA.

作者信息

Dombroski D F, Scraba D G, Bradley R D, Morgan A R

出版信息

Nucleic Acids Res. 1983 Nov 11;11(21):7487-504. doi: 10.1093/nar/11.21.7487.

Abstract

Ethidium fluorescence assays were adapted for the rapid and sensitive detection of precA; in addition, fluorescence measurements on binding precA to linear, OC and CCC PM2 DNAs have enabled the stoichiometry of precA binding as well as the precA-induced unwinding angle of DNA to be determined. The stoichiometry of binding was independently confirmed by sedimentation analysis to be one precA molecule per 3 bp. The unwinding angle was also independently confirmed by measurements of fluorescence changes induced by the binding of precA to CCC DNA which was relaxed by topoisomerase to give a precA-induced unwinding angle of 51 degrees. Electron microscopy of OC DNA molecules which bound nonsaturating amounts of precA revealed that the length increase in DNA due to precA was approximately 55%. Finally, examination of negatively stained precA complexes with a variety of linear DNAs showed that the minor groove is the primary site of interaction for this protein.

摘要

溴化乙锭荧光测定法被用于快速灵敏地检测precA;此外,对precA与线性、开环(OC)和共价闭合环状(CCC)PM2 DNA结合的荧光测量,能够确定precA结合的化学计量以及precA诱导的DNA解旋角度。结合的化学计量通过沉降分析独立确认,为每3个碱基对一个precA分子。解旋角度也通过测量precA与经拓扑异构酶松弛的CCC DNA结合诱导的荧光变化独立确认,得出precA诱导的解旋角度为51度。对结合非饱和量precA的OC DNA分子进行电子显微镜观察发现,由于precA导致的DNA长度增加约为55%。最后,对用多种线性DNA进行负染的precA复合物的检查表明,小沟是该蛋白质的主要相互作用位点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3287/326497/00c6a8457625/nar00366-0242-a.jpg

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