Chan Sum, Giuroiu Iulia, Chernishof Irina, Sawaya Michael R, Chiang Janet, Gunsalus Robert P, Arbing Mark A, Perry L Jeanne
UCLA-DOE Institute for Genomics and Proteomics, University of California at Los Angeles, Los Angeles, CA 90095, USA.
Acta Crystallogr Sect F Struct Biol Cryst Commun. 2010 Mar 1;66(Pt 3):242-50. doi: 10.1107/S1744309109055158. Epub 2010 Feb 23.
The trace-element oxyanion molybdate, which is required for the growth of many bacterial and archaeal species, is transported into the cell by an ATP-binding cassette (ABC) transporter superfamily uptake system called ModABC. ModABC consists of the ModA periplasmic solute-binding protein, the integral membrane-transport protein ModB and the ATP-binding and hydrolysis cassette protein ModC. In this study, X-ray crystal structures of ModA from the archaeon Methanosarcina acetivorans (MaModA) have been determined in the apoprotein conformation at 1.95 and 1.69 A resolution and in the molybdate-bound conformation at 2.25 and 2.45 A resolution. The overall domain structure of MaModA is similar to other ModA proteins in that it has a bilobal structure in which two mixed alpha/beta domains are linked by a hinge region. The apo MaModA is the first unliganded archaeal ModA structure to be determined: it exhibits a deep cleft between the two domains and confirms that upon binding ligand one domain is rotated towards the other by a hinge-bending motion, which is consistent with the 'Venus flytrap' model seen for bacterial-type periplasmic binding proteins. In contrast to the bacterial ModA structures, which have tetrahedral coordination of their metal substrates, molybdate-bound MaModA employs octahedral coordination of its substrate like other archaeal ModA proteins.
微量元素氧阴离子钼酸盐是许多细菌和古菌生长所必需的,它通过一种名为ModABC的ATP结合盒(ABC)转运蛋白超家族摄取系统被转运到细胞中。ModABC由周质溶质结合蛋白ModA、整合膜转运蛋白ModB以及ATP结合和水解盒蛋白ModC组成。在本研究中,已确定古菌嗜乙酸甲烷八叠球菌(MaModA)的ModA在脱辅基蛋白构象下的X射线晶体结构,分辨率分别为1.95 Å和1.69 Å,在钼酸盐结合构象下的分辨率分别为2.25 Å和2.45 Å。MaModA的整体结构域结构与其他ModA蛋白相似,具有双叶结构,其中两个混合的α/β结构域通过一个铰链区相连。脱辅基MaModA是第一个被确定的未结合配体的古菌ModA结构:它在两个结构域之间呈现出一个深裂缝,并证实了在结合配体时,一个结构域通过铰链弯曲运动向另一个结构域旋转,这与细菌型周质结合蛋白的“捕蝇草”模型一致。与具有四面体配位金属底物的细菌ModA结构不同,结合钼酸盐的MaModA与其底物采用八面体配位,这与其他古菌ModA蛋白类似。