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Gating movement of acetylcholine receptor caught by plunge-freezing

机译:急冻冻结捕获的乙酰胆碱受体的门控运动

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摘要

The nicotinic acetylcholine (ACh) receptor converts transiently to an open-channel form when activated by ACh released into the synaptic cleft. We describe here the conformational change underlying this event, determined by electron microscopy of ACh-sprayed and freeze-trapped postsynaptic membranes. ACh binding to the α subunits triggers a concerted rearrangement in the ligand-binding domain, involving an ~ 1-? outward displacement of the extracellular portion of the β subunit where it interacts with the juxtaposed ends of α-helices shaping the narrow membrane-spanning pore. The β-subunit helices tilt outward to accommodate this displacement, destabilising the arrangement of pore-lining helices, which in the closed channel bend inward symmetrically to form a central hydrophobic gate. Straightening and tangential motion of the pore-lining helices effect channel opening by widening the pore asymmetrically and increasing its polarity in the region of the gate. The pore-lining helices of the α γ and δ subunits, by flexing between alternative bent and straight conformations, undergo the greatest movements. This coupled allosteric transition shifts the structure from a tense (closed) state toward a more relaxed (open) state.
机译:烟碱样乙酰胆碱(ACh)受体在被释放到突触间隙中的ACh激活时,会瞬间转化为明渠形式。我们在这里描述此事件的构象变化,由ACh喷涂和冷冻捕获的突触后膜的电子显微镜确定。 ACh与α亚基的结合会触发配体结合域中的协调重排,涉及一个〜1-?。 β亚基的细胞外部分与α螺旋的并列末端相互作用的向外移位,从而形成了跨越膜的狭窄孔。 β亚基螺旋向外倾斜以适应此位移,从而破坏了带孔螺旋的排列,该螺旋在封闭通道中向内对称地向内弯曲以形成中央疏水门。孔隙衬里螺旋的矫直和切线运动通过非对称地扩大孔隙并增加浇口区域的极性来影响通道的开放。通过交替弯曲和笔直构象之间的弯曲,αγ和δ亚基的孔衬螺旋发生最大运动。这种耦合的变构转变将结构从紧张(闭合)状态转变为更放松(开放)状态。

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