Pezza Roberto J, Villarreal Marcos A, Montich Guillermo G, Argaraña Carlos E
Centro de Investigaciones en Química Biológica de Córdoba, UNC-CONICET, Departamento de Química Biológica, Facultad de Ciencias Químicas, Universidad Nacional de Córdoba, Ciudad Universitaria, Córdoba, Argentina.
Nucleic Acids Res. 2002 Nov 1;30(21):4700-8. doi: 10.1093/nar/gkf606.
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.
MutS是ABC ATP酶超家族的成员之一,是DNA复制后错配修复系统(MMRS)中的一种错配DNA结合蛋白成分。在这项研究中,结果表明铜绿假单胞菌和大肠杆菌的MutS的ATP酶活性受到原钒酸盐和十钒酸盐的抑制。将大肠杆菌MutS中参与ATP结合的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)进行结构比较,结果显示它们高度相似。基于这些结果,推测原钒酸盐对MutS ATP酶的抑制作用可能通过与其他ATP酶类似的机制发生。十钒酸盐在MutS的ATP结合区域的对接显示,该化合物在能量上更有利的相互作用将与MutS - ADP - 镁复合物发生,这表明抑制作用可能是由蛋白质ATP/ADP交换的空间位阻产生的。除了观察到对ATP酶活性的影响外,钒酸盐还影响该蛋白质的DNA结合能力,并部分抑制MutS的寡聚化以及蛋白质的温度诱导失活。根据所获得的结果,并考虑到钒酸盐是一种细胞内微量成分,该化合物可被视为MMRS的一种新型调节剂。