McCarthy M P, Stroud R M
Department of Biochemistry and Biophysics, University of California, San Francisco 94143-0448.
J Biol Chem. 1989 Jun 25;264(18):10911-6.
All four subunits of the acetylcholine receptor (AChR) are labeled by the lipid-soluble photolabel 3-(trifluoromethyl)-3-(m-[125I]iodophenyl)diazirine [( 125I]TID) with different stoichiometries and levels of saturable modification sites, dependent on the conformational state of the AChR. This probe is specific for hydrophobic targets such as the membrane-spanning regions of intrinsic proteins. In the resting state, the gamma subunit is labeled 4.5 times greater and the beta and delta subunits 1.65-1.69 greater than the alpha subunit. Carbamylcholine-induced desensitization of the AChR lowers the level and alters the stoichiometry of [125I]TID incorporation into each subunit. This effect is shown to be specific in two ways. First, it is eliminated by prior equilibration with excess alpha-bungarotoxin, which does not change the [125I]TID-labeling pattern of the AChR from that of the resting state. Second, bacteriorhodopsin is labeled by [125I]TID to the same extent both in the presence and absence of carbamylcholine. The noncompetitive blocker phencyclidine does not alter [125I]TID labeling of the AChR relative to the resting state. The 43-kDa protein, which is believed to cross-link the AChR to the cytoskeleton at the synapse, is not modified by [125I]TID, in agreement with earlier conclusions that the 43-kDa protein is not an intrinsic membrane protein.
脂溶性光标记物3-(三氟甲基)-3-(间-[125I]碘苯基)重氮甲烷([125I]TID)可标记乙酰胆碱受体(AChR)的所有四个亚基,标记的化学计量比和可饱和修饰位点水平不同,这取决于AChR的构象状态。该探针特异性作用于疏水靶点,如内在蛋白的跨膜区域。在静息状态下,γ亚基的标记程度比α亚基高4.5倍,β和δ亚基比α亚基高1.65 - 1.69倍。氨甲酰胆碱诱导的AChR脱敏降低了[125I]TID掺入每个亚基的水平并改变了化学计量比。这种效应通过两种方式显示具有特异性。首先,用过量的α-银环蛇毒素预先平衡可消除这种效应,而这不会改变AChR的[125I]TID标记模式,使其与静息状态相同。其次,无论有无氨甲酰胆碱,细菌视紫红质被[125I]TID标记的程度相同。非竞争性阻断剂苯环利定相对于静息状态不会改变AChR的[125I]TID标记。据信在突触处将AChR与细胞骨架交联的43 kDa蛋白不会被[125I]TID修饰,这与早期关于43 kDa蛋白不是内在膜蛋白的结论一致。