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Substrate Modulated Dynamics of the ADP/ATP Transporter Revealed by NMR Relaxation Dispersion

机译:核磁共振弛豫分散揭示了ADP / ATP转运蛋白的底物调节动力学

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摘要

The ADP/ATP carrier (AAC) transports ADP and ATP across the inner mitochondrial membrane. Unlike most transporters that have 2-fold direct or inverted quasi-symmetry, AAC has the apparent 3-fold rotational symmetry. Further, its transport rate is fast for transporters that carry large solutes. Here, we perform comprehensive NMR relaxation dispersion measurements for the yeast AAC carrier 3, which provide residue-specific information on the protein conformational exchange. Our data indicate that AAC is predominantly in the cytosol-facing open state and converts to a lowly populated state in an asymmetric manner despite its three-fold structural symmetry. Binding of the substrate ADP significantly increases the rate of conformational exchange, whereas the inhibitor CATR slows the exchange. These results suggest that while the transporter catalyzes the translocation of substrate, the substrate also facilitates interconversion between alternating states that may be relevant to the transport function.
机译:ADP / ATP载体(AAC)通过线粒体内膜运输ADP和ATP。与大多数具有2倍直接或反向准对称的转运蛋白不同,AAC具有明显的3倍旋转对称性。此外,对于携带大量溶质的运输者,其运输速度很快。在这里,我们对酵母AAC载体3进行了全面的NMR弛豫分散测量,这些测量提供了有关蛋白质构象交换的残基特异性信息。我们的数据表明,尽管AAC具有三重结构对称性,但其主要以面向细胞质的开放状态并以不对称方式转换为低密度状态。底物ADP的结合显着增加了构象交换的速率,而抑制剂CATR则减慢了交换。这些结果表明,尽管转运蛋白催化底物的转运,但底物也促进了可能与转运功能相关的交替状态之间的相互转化。

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