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Sources of energy for gating by neurotransmitters in acetylcholine receptor channels

机译:乙酰胆碱受体通道中神经递质的门控能量来源

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Nicotinic acetylcholine receptors (AChRs) mediate signaling in the central and peripheral nervous systems. The AChR gating conforma-tional change is powered by a low- to high-affinity change for neurotransmitters at two transmitter binding sites. We estimated (from single-channel currents) the components of energy for gating arising from binding site aromatic residues in the α-subunit. All mutations reduced the energy (TyrC1TrpBf≈TyrC2>TyrA), with TyrC1 providing ~40% of the total. Considered one at a time, the fractional energy contributions from the aromatic rings were TrpB ~35%, TyrC1 ~28%, TyrC2 ~28%, and TyrA ~10%. Together, TrpB, TyrC1, and TyrC2 comprise an "aromatic triad" that provides much of the total energy from the transmitter for gating. Analysis of mutant pairs suggests that the energy contributions from some residues are nearly independent. Mutations of TyrC1 cause particularly large energy reductions because they remove two favorable and approximately equal interactions between the aromatic ring and the quaternary amine of the agonist and between the hydroxyl and αLys(β7.
机译:烟碱乙酰胆碱受体(AChRs)介导中枢神经系统和周围神经系统的信号传导。 AChR门控构象变化由两个递质结合位点的神经递质的低亲和力变化引起。我们(从单通道电流中)估计了α亚基中结合位点芳族残基所产生的门控能量分量。所有突变都降低了能量(TyrC1 TrpBf≈TyrC2> TyrA),其中TyrC1提供了约40%的能量。一次考虑一个,芳香环的分数能量贡献为TrpB〜35%,TyrC1〜28%,TyrC2〜28%和TyrA〜10%。 TrpB,TyrC1和TyrC2一起构成了一个“芳香族三合会”,该三合会从发射器中提供了很多总能量用于选通。突变对的分析表明,一些残基的能量贡献几乎是独立的。 TyrC1的突变会导致特别大的能量减少,因为它们消除了芳香环和激动剂的季胺之间以及羟基和αLys(β7)之间的两个有利且近似相等的相互作用。

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