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Structural Basis of Trans-Inhibition in a Molybdate/Tungstate ABC Transporter

机译:钼酸盐/钨酸ABC转运蛋白中反式抑制的结构基础

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Transport across cellular membranes is an essential process that is catalyzed by diverse membrane transport proteins. The turnover rates of certain transporters are inhibited by their substrates in a process termed trans-inhibition, whose structural basis is poorly understood. We present the crystal structure of a molybdate/tungstate ABC transporter (ModBC) from Methanosarcina acetivorans in a trans-inhibited state. The regulatory domains of the nucleotide-binding subunits are in close contact and provide two oxyanion binding pockets at the shared interface. By specifically binding to these pockets, molybdate or tungstate prevent adenosine triphosphatase activity and lock the transporter in an inward-facing conformation, with the catalytic motifs of the nucleotide-binding domains separated. This allosterk effect prevents the transporter from switching between the inward-facing and the outward-facing states, thus interfering with the alternating access and release mechanism.
机译:跨细胞膜的运输是由多种膜运输蛋白催化的必不可少的过程。某些转运蛋白的周转率在其被称为反式抑制的过程中受其底物抑制,其结构基础尚不清楚。我们目前从反式抑制状态的甲烷单孢甲烷藻的钼酸盐/钨酸ABC转运蛋白(ModBC)的晶体结构。核苷酸结合亚基的调节结构域紧密接触,并在共享界面上提供两个氧阴离子结合口袋。通过与这些口袋特异性结合,钼酸盐或钨酸盐可防止腺苷三磷酸酶活性并将转运蛋白锁定在向内构象,而核苷酸结合结构域的催化基序则被分离。这种变构效应防止转运蛋白在向内和向外状态之间切换,从而干扰交替的进入和释放机制。

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