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Atomic structures of closed and open influenza B M2 proton channel reveal the conduction mechanism

机译:封闭和开放性流感的原子结构B M2质子通道显示导通机构

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摘要

The influenza B M2 (BM2) proton channel is activated by acidic pH to mediate virus uncoating. Unlike influenza A M2 (AM2), which conducts protons with strong inward rectification, BM2 conducts protons both inward and outward. Here we report 1.4- and 1.5-angstrom solid-state NMR structures of the transmembrane domain of the closed and open BM2 channels in a phospholipid environment. Upon activation, the transmembrane helices increase the tilt angle by 6 degrees and the average pore diameter enlarges by 2.1 angstrom. BM2 thus undergoes a scissor motion for activation, which differs from the alternating-access motion of AM2. These results indicate that asymmetric proton conduction requires a backbone hinge motion, whereas bidirectional conduction is achieved by a symmetric scissor motion. The proton-selective histidine and gating tryptophan in the open BM2 reorient on the microsecond timescale, similar to AM2, indicating that side chain dynamics are the essential driver of proton shuttling. Solid-state NMR structures of the influenza B M2 (BM2) proton channel transmembrane domain in a phospholipid environment reveal open and closed conformations and indicate that side chain dynamics are essential for proton shuttling by BM2.
机译:通过酸性pH激活流感Bm2(BM2)质子通道以介导病毒的脱涂。与流感的M2(AM2)不同,该M2(AM2)具有强大的向内整流的质子,BM2向内和向外进行质子。在这里,我们在磷脂环境中向闭合BM2通道的透明BM2通道的跨膜结构域报告1.4-和1.5埃固态NMR结构。在激活后,跨膜螺旋将倾斜角度增加6度,并且平均孔径扩大到2.1埃。因此,BM2经历了激活的剪刀运动,这与AM2的交替访问运动不同。这些结果表明,不对称的质子传导需要骨干铰链运动,而通过对称剪刀运动实现双向传导。质子选择性组氨酸和浇注色氨酸在开放的BM2 Reorient上,类似于AM2,表明侧链动力学是质子出血的基本驱动因素。磷脂环境中的流感B M2(BM2)质子通道跨膜结构域的固态NMR结构揭示了开放和闭合构象,并表明侧链动力学对于BM2的质子梭子是必不可少的。

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