Cashin Amanda L, Torrice Michael M, McMenimen Kathryn A, Lester Henry A, Dougherty Dennis A
Division of Chemistry and Chemical Engineering, California Institute of Technology, Pasadena, California 91125, USA.
Biochemistry. 2007 Jan 23;46(3):630-9. doi: 10.1021/bi061638b.
The nicotinic acetylcholine receptor and related Cys-loop receptors are ligand-gated ion channels that mediate fast synaptic transmission throughout the central and peripheral nervous system. A highly conserved aspartate residue (D89) that is near the agonist binding site but does not directly contact the ligand plays a critical part in receptor function. Here we probe the role of D89 using unnatural amino acid mutagenesis coupled with electrophysiology. Homology modeling implicates several hydrogen bonds involving D89. We find that no single hydrogen bond is essential to proper receptor function. Apparently, the side chain of D89 establishes a redundant network of hydrogen bonds; these bonds preorganize the agonist binding site by positioning a critical tryptophan residue that directly contacts the ligand. Earlier studies of the D89N mutant led to the proposal that a negative charge at this position is essential for receptor function. However, we find that receptors with neutral side chains at position 89 can function well, if the side chain is less perturbing than the amide of asparagine (nitro or keto groups allow function) or if a compensating backbone mutation is introduced to relieve unfavorable electrostatics.
烟碱型乙酰胆碱受体及相关的半胱氨酸环受体是配体门控离子通道,介导中枢和外周神经系统中的快速突触传递。一个高度保守的天冬氨酸残基(D89)位于激动剂结合位点附近,但不直接与配体接触,在受体功能中起关键作用。在此,我们利用非天然氨基酸诱变结合电生理学方法探究D89的作用。同源建模表明涉及D89的几个氢键。我们发现没有单个氢键对受体的正常功能是必不可少的。显然,D89的侧链建立了一个冗余的氢键网络;这些氢键通过定位一个直接与配体接触的关键色氨酸残基来预组织激动剂结合位点。早期对D89N突变体的研究提出该位置的负电荷对受体功能至关重要。然而,我们发现如果89位的侧链比天冬酰胺的酰胺基团干扰性小(硝基或酮基允许功能),或者如果引入一个补偿性的主链突变以减轻不利的静电作用,那么89位带有中性侧链的受体也能正常发挥功能。