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首页> 外文期刊>The Journal of biological chemistry >Negative Stain Single-particle EM of the Maltose Transporter in Nanodiscs Reveals Asymmetric Closure of MalK2 and Catalytic Roles of ATP, MalE, and Maltose
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Negative Stain Single-particle EM of the Maltose Transporter in Nanodiscs Reveals Asymmetric Closure of MalK2 and Catalytic Roles of ATP, MalE, and Maltose

机译:麦芽糖转运蛋白在纳米圆盘中的负污点单颗粒EM显示MalK2的不对称闭合以及ATP,MalE和麦芽糖的催化作用

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摘要

The Escherichia coli MalE-MalFGK2 complex is one of the best characterized members of the large and ubiquitous family of ATP-binding cassette (ABC) transporters. It is composed of a membrane-spanning heterodimer, MalF-MalG; a homodimeric ATPase, MalK2; and a periplasmic maltose receptor, MalE. Opening and closure of MalK2 is coupled to conformational changes in MalF-MalG and the alternate exposition of the substrate-binding site to either side of the membrane. To further define this alternate access mechanism and the impact of ATP, MalE, and maltose on the conformation of the transporter during the transport cycle, we have reconstituted MalFGK2 in nanodiscs and analyzed its conformations under 10 different biochemical conditions using negative stain single-particle EM. EM map results (at 15–25 ? resolution) indicate that binding of ATP to MalK2 promotes an asymmetric, semi-closed conformation in accordance with the low ATPase activity of MalFGK2. In the presence of MalE, the MalK dimer becomes fully closed, gaining the ability to hydrolyze ATP. In the presence of ADP or maltose, MalE·MalFGK2 remains essentially in a semi-closed symmetric conformation, indicating that release of these ligands is required for the return to the initial state. Taken together, this structural information provides a rationale for the stimulation of MalK ATPase activity by MalE as well as by maltose.
机译:大肠杆菌MalE-MalFGK2复合物是广泛存在的ATP结合盒(ABC)转运蛋白家族中最具特征的成员之一。它由跨膜异源二聚体MalF-MalG组成。同源二聚体ATP酶MalK2;和周质麦芽糖受体MalE。 MalK2的打开和关闭与MalF-MalG的构象变化以及底物结合位点向膜两边的交替暴露有关。为了进一步定义这种替代的访问机制以及ATP,MalE和麦芽糖在运输周期中对转运蛋白构象的影响,我们在纳米圆盘中重构了MalFGK2,并使用负染色单颗粒EM在10种不同的生化条件下分析了其构象。 EM图谱结果(在15–25?分辨率下)表明,ATP与MalK2的结合促进了MalFGK2 ATP酶活性低的不对称,半封闭构象。在MalE存在的情况下,MalK二聚体变得完全封闭,从而具有水解ATP的能力。在存在ADP或麦芽糖的情况下,MalE·MalFGK2基本上保持为半封闭的对称构象,这表明释放这些配体是返回初始状态所必需的。综上所述,该结构信息为通过MalE和麦芽糖刺激MalK ATPase活性提供了理论依据。

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