Department of Biochemistry, University of Toronto, Toronto, Ontario, Canada M5S 1A8.
J Struct Biol. 2012 Aug;179(2):211-21. doi: 10.1016/j.jsb.2012.03.010. Epub 2012 Apr 3.
The MoxR family of AAA+ ATPases is widespread among bacteria and archaea, although their cellular functions are not well characterized. Based on recent studies, MoxR ATPases are proposed to have chaperone-like function for the maturation of specific protein complexes or for the insertion of cofactors into proteins. MoxR proteins have been found to be important modulators of multiple stress response pathways in different organisms. For example, the respective MoxR proteins have been found to play important roles in the cell envelope stress response in Rhizobium leguminosarum, in the oxidative stress, acid stress, and heat stress responses in Francisella tularensis, in the acid stress and stringent responses in Escherichia coli, in viral tail formation in the crenarchaeal Acidianus two-tailed virus, and in the utilization of carbon monoxide as the sole carbon source by the Gram-negative chemolithoautotrophe Oligotropha carboxidovorans. Recent structural studies on the MoxR proteins from E. coli and Cytophaga hutchinsonii show the unique spatial arrangement of the αβα and all-α subdomains of the AAA+ domain in these proteins compared to the typical arrangement found in canonical AAA+ proteins such as HslU. The spatial organization of the subdomains in the AAA+ domain of MoxR proteins is similar to that found in the ATPase component of the magnesium chelatase complexes, possibly suggesting a similar mechanism of function. In this review, we provide an overview of the newly identified functions and the newly obtained structures of MoxR AAA+ ATPases.
MoxR 家族的 AAA+ATP 酶广泛存在于细菌和古菌中,尽管它们的细胞功能尚未得到很好的描述。基于最近的研究,MoxR ATP 酶被认为具有伴侣样功能,可用于特定蛋白复合物的成熟或辅助因子插入蛋白。已经发现 MoxR 蛋白是不同生物体中多种应激反应途径的重要调节剂。例如,分别在根瘤菌、弗朗西斯氏菌、大肠杆菌、栖热水生菌中发现 MoxR 蛋白在细胞包膜应激反应、氧化应激、酸应激和热应激反应、酸应激和严格反应、古菌两尾病毒的尾部形成以及革兰氏阴性化能自养菌寡养单胞菌利用一氧化碳作为唯一碳源中发挥重要作用。最近对大肠杆菌和噬纤维菌 MoxR 蛋白的结构研究表明,与典型的 AAA+蛋白(如 HslU)中发现的典型排列相比,这些蛋白的 AAA+结构域中的 αβα 和全-α 亚结构域具有独特的空间排列。MoxR 蛋白 AAA+结构域中亚结构域的空间组织与镁螯合酶复合物中 ATP 酶成分的空间组织相似,这可能表明存在类似的功能机制。在这篇综述中,我们概述了新发现的 MoxR AAA+ATP 酶的功能和新获得的结构。