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首页> 外文期刊>The Plant Cell >Conformational changes represent the rate-limiting step in the transport cycle of maize SUCROSE TRANSPORTER1.
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Conformational changes represent the rate-limiting step in the transport cycle of maize SUCROSE TRANSPORTER1.

机译:构象变化代表玉米SUCROSE TRANSPORTER1运输周期中的限速步骤。

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Proton-driven Suc transporters allow phloem cells of higher plants to accumulate Suc to more than 1 M, which is up to ~1000-fold higher than in the surrounding extracellular space. The carrier protein can accomplish this task only because proton and Suc transport are tightly coupled. This study provides insights into this coupling by resolving the first step in the transport cycle of the Suc transporter SUT1 from maize (Zea mays). Voltage clamp fluorometry measurements combining electrophysiological techniques with fluorescence-based methods enable the visualization of conformational changes of SUT1 expressed in Xenopus laevis oocytes. Using the Suc derivate sucralose, binding of which hinders conformational changes of SUT1, the association of protons to the carrier could be dissected from transport-associated movements of the protein. These combined approaches enabled us to resolve the binding of protons to the carrier and its interrelationship with the alternating movement of the protein. The data indicate that the rate-limiting step of the reaction cycle is determined by the accessibility of the proton binding site. This, in turn, is determined by the conformational change of the SUT1 protein, alternately exposing the binding pockets to the inward and to the outward face of the membrane.
机译:质子驱动的Suc转运蛋白使高等植物的韧皮部细胞积聚的Suc超过1 M,比周围的细胞外空间高约1000倍。仅因为质子和Suc转运紧密耦合,载体蛋白才能完成此任务。这项研究通过解决玉米(Sea mays)的Suc转运蛋白SUT1转运周期的第一步,为这种耦合提供了见识。电压钳荧光法测量将电生理技术与基于荧光的方法相结合,可以可视化非洲爪蟾卵母细胞中表达的SUT1的构象变化。使用Suc衍生的三氯蔗糖,其结合会阻碍SUT1的构象变化,可以从蛋白质的运输相关运动中分离质子与载体的缔合。这些组合的方法使我们能够解决质子与载体的结合及其与蛋白质交替运动的相互关系。数据表明,反应循环的限速步骤由质子结合位点的可及性决定。反过来,这是由SUT1蛋白的构象变化决定的,将结合袋交替暴露在膜的内部和外部。

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