Biomolecular Research, Paul Scherrer Institut, 5232 Villigen, Switzerland.
J Biol Chem. 2011 Mar 18;286(11):9457-67. doi: 10.1074/jbc.M110.197442. Epub 2011 Jan 5.
The oxaloacetate decarboxylase primary Na(+) pump (OAD) is an essential membrane protein complex that functions in the citrate fermentation pathway of some pathogenic bacteria under anaerobic conditions. OAD contains three different subunits: Oad-α, a biotinylated extrinsic protein that catalyzes the α-ketodecarboxylation of oxaloacetate; Oad-γ, a structural bitopic membrane protein whose cytosolic tail (named as Oad-γ') binds tightly to Oad-α; and Oad-β, a multispan transmembrane α-helical protein that constitutes the Na(+) channel. How OAD is organized structurally at the membrane and what the molecular determinants are that lead to an efficient energy coupling mechanism remain elusive. In the present work, we elucidate the stoichiometry of the native complex as well as the low resolution structure of the peripheral components of OAD (Oad-α and Oad-γ') by small angle x-ray scattering. Our results point to a quaternary assembly similar to the pyruvate carboxylase complex organization. Herein, we propose a model in which the association in pairs of Oad-α dimers, mediated by Oad-γ, results in the acquisition of a functional oligomeric state at the bacterial membrane. New structural insights for the conformational rearrangements associated with the carboxylbiotin transfer reaction within OAD are provided.
草酰乙酸脱羧酶初级 Na(+) 泵(OAD)是一种必需的膜蛋白复合物,在某些病原细菌的柠檬酸发酵途径中,在厌氧条件下发挥作用。OAD 包含三个不同的亚基:Oad-α,一种催化草酰乙酸α-酮脱羧的生物素化外显子蛋白;Oad-γ,一种结构双位膜蛋白,其胞质尾(命名为 Oad-γ')与 Oad-α 紧密结合;和 Oad-β,一种多跨跨膜α-螺旋蛋白,构成 Na(+) 通道。OAD 在膜上的结构如何组织以及导致有效能量偶联机制的分子决定因素仍不清楚。在本工作中,我们通过小角度 X 射线散射阐明了天然复合物的化学计量以及 OAD 的外围成分(Oad-α 和 Oad-γ')的低分辨率结构。我们的结果表明了一种类似于丙酮酸羧化酶复合物的四级组装。在此,我们提出了一个模型,其中 Oad-γ 介导的 Oad-α 二聚体对的缔合导致在细菌膜上获得功能性寡聚状态。为 OAD 内的羧基生物素转移反应相关的构象重排提供了新的结构见解。