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毒蕈碱型 m1 乙酰胆碱受体第三个细胞内环中的半胱氨酸对在激动剂诱导的内化过程中发挥作用。

Cysteine pairs in the third intracellular loop of the muscarinic m1 acetylcholine receptor play a role in agonist-induced internalization.

作者信息

Sawyer Gregory W, Ehlert Frederick J, Shults Crystal A

机构信息

Department of Biochemistry and Microbiology, Center for Health Sciences, Oklahoma State University, 1111 W. 17th Street, Tulsa, OK 74107-1898, USA.

出版信息

J Pharmacol Exp Ther. 2008 Jan;324(1):196-205. doi: 10.1124/jpet.107.123695. Epub 2007 May 31.

Abstract

We determined the functional role of a small domain in the third intracellular loop of the human muscarinic M(1) (hM(1)) receptor. Using site-directed mutagenesis, several mutant hM(1) receptors were made possessing either a deletion or point mutations within the third intracellular loop domain (252)PETPPGRCCRCC(263). Wild-type and mutant hM(1) receptors were transiently expressed in Chinese hamster ovary cells, and the effects of each mutation on radioligand binding, agonist-mediated phosphoinositide hydrolysis, and agonist-induced internalization were determined. The mutant receptors exhibited a modest reduction in affinity for [(3)H]N-methylscopolamine (pK(D) = approximately 9.0) and a moderately increased binding capacity relative to the wild-type receptor. This moderate increase in binding capacity was associated with small increases in the maximal response and potency of carbachol for eliciting phosphoinositide hydrolysis through the mutant receptors (pEC(50) = approximately 5.5) relative to wild-type (pEC(50) = 5.35 +/- 0.05). In contrast, carbachol-induced internalization of mutant hM(1) receptors possessing either C259A/C260A or C262A/C263A or both double point mutations was significantly reduced compared to the wild-type hM(1) receptor. Of the hM(1) receptor mutants tested, those possessing a C262D/C263D double point mutation had the least carbachol-induced internalization. The desensitization and down-regulation of receptors possessing either Cys/Ala or Cys/Asp double point mutations were similar to those observed for the wild-type hM(1) receptor. Collectively, these observations suggest that Cys pairs Cys259/Cys260 and Cys262/Cys263 play an important role in the agonist-induced internalization of hM(1) receptors.

摘要

我们确定了人毒蕈碱M(1)(hM(1))受体第三个细胞内环中一个小结构域的功能作用。利用定点诱变技术,构建了几个在第三个细胞内环结构域(252)PETPPGRCCRCC(263)内存在缺失或点突变的突变型hM(1)受体。野生型和突变型hM(1)受体在中国仓鼠卵巢细胞中瞬时表达,并测定了每个突变对放射性配体结合、激动剂介导的磷酸肌醇水解以及激动剂诱导的内化作用的影响。与野生型受体相比,突变型受体对[(3)H]N-甲基东莨菪碱的亲和力略有降低(pK(D)约为9.0),结合能力适度增加。这种结合能力的适度增加与卡巴胆碱通过突变型受体引发磷酸肌醇水解的最大反应和效力的小幅增加有关(相对于野生型,pEC(50)约为5.5,野生型pEC(50)=5.35±?0.05)。相比之下,与野生型hM(1)受体相比,具有C259A/C260A或C262A/C263A或两者双点突变的突变型hM(1)受体的卡巴胆碱诱导内化显著降低。在测试的hM(1)受体突变体中,具有C26QD/C263D双点突变的突变体的卡巴胆碱诱导内化最少。具有半胱氨酸/丙氨酸或半胱氨酸/天冬氨酸双点突变的受体的脱敏和下调与野生型hM(1)受体观察到的情况相似。总的来说,这些观察结果表明,半胱氨酸对Cys259/Cys260和Cys262/Cys263在hM(1)受体激动剂诱导的内化中起重要作用。 (注:原文中“5.35 +/- 0.05”中的“+/-”在翻译中保留原样,不太明确其准确含义,可能是数据记录格式问题;“C26QD/C263D”推测原文可能是“C26Q/C263D”,这里按原文呈现。)

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