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首页> 外文期刊>Biochemistry >The nuclease domain of the Escherichia coli RecBCD enzyme catalyzes degradation of linear and circular single-stranded and double-stranded DNA
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The nuclease domain of the Escherichia coli RecBCD enzyme catalyzes degradation of linear and circular single-stranded and double-stranded DNA

机译:大肠杆菌COLI RECBCD酶的核酸酶催化线性和圆形单链和双链DNA的降解

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摘要

The 30 kDa C-terminal domain of the RecB protein (RecB30) has nuclease activity and is believed to be responsible for the nucleolytic activities of the RecBCD enzyme. However, the RecB30 protein, studied as a histidine-tagged fusion protein, appeared to have very low nucleolytic activity on single-stranded (ss) DNA [Zhang, X. J., and Julin, D. A. (1999) Nucleic Acids Res. 27, 4200-4207], which raised the question of whether RecB30 was indeed the sole nuclease domain of RecBCD. Here, we have purified the RecB30 protein without a fusion tag. We report that RecB30 efficiently degrades both linear and circular single- and double-stranded (ds) DNA. The endonucleolytic cleavage of circular dsDNA is consistent with the fact that RecB30 has amino acid sequence similarity to some restriction endonucleases. However, endonuclease activity on dsDNA had never been seen before for RecBCD or any fragments of RecBCD Kinetic analysis indicates that RecB30 is at least as active as RecBCD on the ssDNA substrates. These results provide direct evidence that RecB30 is the universal nuclease domain of RecBCD. The fact that the RecB30 nuclease domain alone has high intrinsic nuclease activity and can cleave dsDNA endonucleolytically suggests that the nuclease activity of RecB30 is modulated when it is part of the RecBCD holoenzyme. A new model has been proposed to explain the regulation of the RecB30 nuclease in RecBCD.
机译:RECB蛋白(RECB30)的30kDA C-末端结构域具有核酸酶活性,并且被认为是RECBCD酶的核水溶液的原因。然而,作为组氨酸标记的融合蛋白研究的RECB30蛋白似乎在单链(SS)DNA上具有非常低的核灭绝活性[张,X.J.,D.A。(1999)核酸Res。 27,4200-4207]提出了RECB30确实是RecBCD的唯一核酸酶的问题。在这里,我们纯化了没有融合标签的RECB30蛋白质。我们报告说,RECB30有效地降解了线性和圆形单链和双链(DS)DNA。圆形DSDNA的内核分解裂解一致的是,RECB30与某些限制性内切核酸酶具有氨基酸序列相似性。然而,对于RecBCD之前从未见过DSDNA的内切核酸酶活性,或者RECBCD动力学分析的任何片段表明,RECB30至少在SSDNA底物上作为RECBCD作为RecBCD。这些结果提供了直接证据,即RECB30是RecBCD的通用核酸域。仅通过单独的COMCH30核酸酶具有高固有核酸酶活性,并且可以切割DSDNA内核溶解情况表明,当它是RecBCD全酶的一部分时,调节RECB30的核酸酶活性。已经提出了一种新的模型来解释RecBCD中RECB30核酸酶的调节。

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