胆囊收缩素受体外域半胱氨酸的二硫键结构和可及性:特定的单反应性受体结构检查环路区域的电荷敏感性。

Xi-Qin Ding, Vesile Dolu, E. Hadac, M. Schuetz, L. Miller
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引用次数: 11

摘要

半胱氨酸残基在结构分析中起着独特的作用。我们检测了胆囊收缩素受体中的内源性半胱氨酸残基,以确定二硫键的参与和对甲乙硫磺酸(MTS)试剂的可及性。Cys114与Cys196、Cys18与Cys29的键连接得到证实,其中第一个键功能重要,氨基末端键无明显功能。位于第二跨膜节段的Cys94也可接近。该残基突变为丝氨酸(C94S)是建立无半胱氨酸反应性伪野生型受体的关键,该受体可以作为插入活性半胱氨酸(N102C, A204C和T341C)的模板。用带负电荷的MTS试剂修饰T341C降低了CCK激动剂的结合,而带正电荷的MTS试剂则增强了这种结合。这种模式在突变体中重复,相同的残基直接被带电的残基取代。
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Disulfide bond structure and accessibility of cysteines in the ectodomain of the cholecystokinin receptor: specific mono-reactive receptor constructs examine charge-sensitivity of loop regions.
Cysteine residues play a unique role in structural analysis. We examined endogenous cysteine residues in the cholecystokinin receptor to determine participation in disulfide bonds and accessibility to methanethiosulfonate (MTS) reagents. Bonds linking Cys114 to Cys196 and Cys18 to Cys29 were demonstrated, with the first functionally important and the amino-terminal bond having no apparent function. Cys94, in the second transmembrane segment, was also accessible. Mutation of this residue to serine (C94S) was key for establishing a null cysteine-reactive pseudo-wild type receptor that could act as a template for insertion of a reactive cysteine (N102C, A204C, and T341C). Modification of T341C with a negatively charged MTS reagent reduced CCK agonist binding, while this binding was enhanced by a positively charged MTS reagent. This pattern was repeated in mutants having the same residue directly replaced with a charged residue.
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