首页> 美国卫生研究院文献>Nucleic Acids Research >Vanadate inhibits the ATPase activity and DNA binding capability of bacterial MutS. A structural model for the vanadate–MutS interaction at the Walker A motif
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Vanadate inhibits the ATPase activity and DNA binding capability of bacterial MutS. A structural model for the vanadate–MutS interaction at the Walker A motif

机译:钒酸盐抑制细菌MutS的ATPase活性和DNA结合能力。 Walker A图案上钒酸盐-MutS相互作用的结构模型

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摘要

MutS, a member of the ABC ATPases superfamily, is a mismatch DNA-binding protein constituent of the DNA post-replicative mismatch repair system (MMRS). In this work, it is shown that the ATPase activity of Pseudomonas aeruginosa and Escherichia coli MutS is inhibited by ortho- and decavanadate. Structural comparison of the region involved in the ATP binding of E.coli MutS with the corresponding region of other ABC ATPases inhibited by vanadate, including the myosin– orthovanadate–Mg complex, showed that they are highly similar. From these results it is proposed that the orthovanadate inhibition of MutS ATPase can take place by a similar mechanism to that described for other ATPases. Docking of decavanadate on the ATP-binding region of MutS showed that the energetically more favorable interaction of this compound would take place with the complex MutS– ADP–Mg, suggesting that the inhibitory effect could be produced by a steric impediment of the protein ATP/ADP exchange. Besides the effect observed on the ATPase activity, vanadate also affects the DNA-binding capability of the protein, and partially inhibits the oligomerization of MutS and the temperature-induced inactivation of the protein. From the results obtained, and considering that vanadate is an intracellular trace component, this compound could be considered as a new modulator of the MMRS.
机译:MutS是ABC ATPases超家族的成员,是DNA复制后错配修复系统(MMRS)的错配DNA结合蛋白成分。在这项工作中,表明铜绿假单胞菌和大肠杆菌MutS的ATPase活性被原癸酸和十癸酸盐抑制。大肠杆菌MutS的ATP结合区域与其他受钒酸盐抑制的ABC ATP酶的相应区域(包括肌球蛋白-原钒酸盐-镁复合物)的结构比较表明,它们高度相似。从这些结果表明,可以通过与针对其他ATP酶所描述的机制相似的机制来发生对MutS ATPase的原钒酸盐抑制。十钒酸盐在MutS的ATP结合区域上的对接表明,该化合物与复合物MutS–ADP–Mg的相互作用在能量上更有利,这表明该抑制作用可能是由于ATP / ADP交换。钒酸盐除了可以观察到对ATPase活性的影响外,还影响蛋白质的DNA结合能力,并部分抑制MutS的寡聚和温度诱导的蛋白质失活。根据获得的结果,并考虑到钒酸盐是细胞内微量成分,该化合物可被视为MMRS的新调节剂。

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