Santiago John, Guzmán Gisila R, Torruellas Karla, Rojas Legier V, Lasalde-Dominicci José A
Department of Biology, University of Puerto Rico, P.O. Box 23360, San Juan, Puerto Rico 00931-3360.
Biochemistry. 2004 Aug 10;43(31):10064-70. doi: 10.1021/bi0362368.
We used tryptophan substitutions to characterize the beta M3 transmembrane domain (betaTM3) of the acetylcholine receptor (AChR). We generated 15 mutants with tryptophan substitutions within the betaTM3 domain, between residues R282W and I296W. The various mutants were injected into Xenopus oocytes, and expression levels were measured by [125I]-alpha-bungarotoxin binding. Expression levels of the M288W, I289W, L290W, and F293W mutants were similar to that of wild type, whereas the other mutants (R282W, Y283W, L284W, F286W, I287W, V291W, A292W, S294W, V295W, and I296W) were expressed at much lower levels than that of wild type. None of these tryptophan mutants produced peak currents larger than that of wild type. Five of the mutants, L284W, F286W, I287W, V295W, and I296W, were expressed at levels <15% of the wild type. I296W had the lowest expression levels and did not display any significant ACh-induced current, suggesting that this position is important for the function and assembly of the AChR. Tryptophan substitution at three positions, L284, V291, and A292, dramatically inhibited AChR assembly and function. A periodicity analysis of the alterations in AChR expression at positions 282-296 of the betaTM3 domain was consistent with an alpha-helical structure. Residues known to be exposed to the membrane lipids, including R282, M285, I289, and F293, were all found in all the upper phases of the oscillatory pattern. Mutants that were expressed at lower levels are clustered on one side of a proposed alpha-helical structure. These results were incorporated into a structural model for the spatial orientation of the TM3 of the Torpedo californica beta subunit.
我们采用色氨酸替换法来表征乙酰胆碱受体(AChR)的βM3跨膜结构域(βTM3)。我们在βTM3结构域内,于R282W和I296W残基之间生成了15个色氨酸替换突变体。将各种突变体注射到非洲爪蟾卵母细胞中,并通过[125I] -α-银环蛇毒素结合来测量表达水平。M288W、I289W、L290W和F293W突变体的表达水平与野生型相似,而其他突变体(R282W、Y283W、L284W、F286W、I287W、V291W、A292W、S294W、V295W和I296W)的表达水平远低于野生型。这些色氨酸突变体均未产生比野生型更大的峰值电流。其中五个突变体,L284W、F286W、I287W、V295W和I296W,表达水平低于野生型的15%。I296W的表达水平最低,且未显示出任何显著的乙酰胆碱诱导电流,这表明该位置对AChR的功能和组装很重要。在三个位置L284、V291和A292处的色氨酸替换显著抑制了AChR的组装和功能。对βTM3结构域282 - 296位AChR表达变化的周期性分析与α-螺旋结构一致。已知暴露于膜脂的残基,包括R282、M285、I289和F293,均出现在振荡模式的所有上相位中。表达水平较低的突变体聚集在推测的α-螺旋结构的一侧。这些结果被纳入了加州电鳐β亚基TM3空间取向的结构模型中。