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人降钙素受体细胞内环1对肌醇磷酸第二信使形成的抑制作用。合成受体基因的表达及突变分析

Inhibition of inositol phosphate second messenger formation by intracellular loop one of a human calcitonin receptor. Expression and mutational analysis of synthetic receptor genes.

作者信息

Nussenzveig D R, Thaw C N, Gershengorn M C

机构信息

Department of Medicine, Cornell University Medical College, New York, New York 10021.

出版信息

J Biol Chem. 1994 Nov 11;269(45):28123-9.

PMID:7961748
Abstract

Receptors for calcitonin (CTRs) have been cloned from several species, and two isoforms have been found to be expressed in human tissue. One human CTR isoform (hCTR-1) contains a 16-amino acid insertion in its first intracellular (I1) loop that is not present in porcine CTR (pCTR), rat CTR, or the other human CTR (hCTR-2). To facilitate the study of CTRs by mutational analysis, we have constructed synthetic hCTR-1 and hCTR-2 genes. Activation of hCTR-1 expressed transiently in COS-1 cells stimulates the formation of cAMP but not of inositol phosphates (IPs) whereas pCTR, a chimeric CTR in which the I1 loop of pCTR was substituted for the I1 loop of hCTR-1, and hCTR-2 stimulate cAMP and IP formation. A series of chimeric CTRs in which intracellular loops 1, 2, and 3 and the carboxyl tail of pCTR were substituted individually or in combination for those of hCTR-1 were constructed. All chimeras stimulated cAMP formation whereas chimeras containing the I1 loop of hCTR-1 with its 16-amino acid insertion were incapable of stimulating IP formation. There was no correlation between maximal stimulation of cAMP and IP formation by these CTRs. Thus, an inserted sequence in the I1 loop of hCTR-1 abolishes stimulation of the IP signal transduction pathway while allowing stimulation of the cAMP pathway.

摘要

降钙素受体(CTRs)已从多个物种中克隆出来,并且发现两种亚型在人体组织中表达。一种人类CTR亚型(hCTR-1)在其第一个细胞内(I1)环中有一个16个氨基酸的插入序列,而猪CTR(pCTR)、大鼠CTR或另一种人类CTR(hCTR-2)中不存在该序列。为了通过突变分析促进对CTRs的研究,我们构建了合成的hCTR-1和hCTR-2基因。在COS-1细胞中瞬时表达的hCTR-1的激活刺激了cAMP的形成,但不刺激肌醇磷酸(IPs)的形成,而pCTR(一种嵌合CTR,其中pCTR的I1环替代了hCTR-1的I1环)和hCTR-2刺激了cAMP和IP的形成。构建了一系列嵌合CTRs,其中pCTR的细胞内环1、2和3以及羧基末端分别或组合替代了hCTR-1的相应部分。所有嵌合体都刺激了cAMP的形成,而包含带有16个氨基酸插入序列的hCTR-1的I1环的嵌合体则无法刺激IP的形成。这些CTRs对cAMP和IP形成的最大刺激之间没有相关性。因此,hCTR-1的I1环中的插入序列消除了对IP信号转导途径的刺激,同时允许对cAMP途径的刺激。

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