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以前列腺素EP2受体为供体,缓激肽B2受体内侧面的嵌合交换:第二个细胞内环对环磷酸腺苷合成的重要性。

Chimeric exchanges within the bradykinin B2 receptor intracellular face with the prostaglandin EP2 receptor as the donor: importance of the second intracellular loop for cAMP synthesis.

作者信息

Pal-Ghosh Ruma, Yu Jun, Prado Gregory N, Taylor Linda, Mierke Dale F, Polgar Peter

机构信息

Department of Biochemistry, Boston University School of Medicine, Boston, MA 02118, USA.

出版信息

Arch Biochem Biophys. 2003 Jul 1;415(1):54-62. doi: 10.1016/s0003-9861(03)00217-0.

Abstract

The prostaglandin E2 (PGE(2)) EP2 receptor (EP2R) type is G protein coupled (GPCR) and links to Galphas. Through this receptor PGE(2) activates cAMP production. The bradykinin (BK) B2 receptor (BKB2R) is also a GPCR but links to Galphaq and Galphai and does not activate cAMP production in response to bradykinin. In an attempt to convert the BKB2R into a Galphas-linked adenylate cyclase-activating receptor we proceeded to make global and discrete motif replacements of the intracellular (IC) face of the BKB2R with the corresponding regions of the human EP2R. With this approach we produced hybrid receptors which, when stably transfected into wild type (WT) Rat-1 cells, bound BK but produced cAMP. Replacement of the second loop (IC2), third loop (IC3), the entire C terminus, and the distal C terminus resulted in receptors which bound BK. However, only the IC2 and IC3 exchanges resulted in cAMP-producing receptors. Of these two regions, the IC2 exchange was by far the better cAMP-generating receptor, producing cAMP at approximately 6.6-fold above WT BKB2R or approximately one fourth the amount produced by WT EP2R-transfected Rat-1 cells. Both human and rat EP2R and human beta2-adrenergic receptor exchanges of the IC2 produced equal quantities of cAMP. Focusing on the rBKB2R/hEP2R IC2 chimeras, the region consisting of residues 136-147 (BKB2R residue numbering) proved to contain a cAMP-generating motif. Within this region, the proximal six amino acids from the EP2R (HPYFYQ) at position 136-141 proved crucial for cAMP production (10-fold over WT BKB2R). The distal part of this region, the six residues at 142-147, played no role in cAMP production. On the other hand, the ALV motif of the BKB2R IC2, residues 133-135, proved important with respect to phosphatydilinositol (PI) turnover. Replacing the entire IC2 of BKB2R resulted in poor PI turnover, while including the AVL of BKB2R retained approximately half of the WT PI turnover. With respect to receptor uptake, all the IC2 mutants endocytosed as WT BKB2R (60% in 1h). However, the exchange of the distal and the whole C termini resulted in a marked drop in endocytosis (30% in 1h). These results demonstrate that the construction of a cAMP-producing BKB2/EP2 receptor hybrid is possible, with the IC2 region distal to DRYLALV proving important to Galphas linkage and the LALV motif within the IC2 of BKB2R and the region proximal to it proving important for Galphaq and Galphai linkage. Additionally, our results confirm the importance of the distal C terminus in determining receptor uptake.

摘要

前列腺素E2(PGE(2))的EP2受体(EP2R)属于G蛋白偶联受体(GPCR),与Gαs相连。通过该受体,PGE(2)可激活环磷酸腺苷(cAMP)的生成。缓激肽(BK)的B2受体(BKB2R)也是一种GPCR,但与Gαq和Gαi相连,且缓激肽作用下不会激活cAMP的生成。为了将BKB2R转变为与Gαs相连的腺苷酸环化酶激活受体,我们着手用人类EP2R的相应区域对BKB2R的细胞内(IC)面进行整体和离散基序替换。通过这种方法,我们构建了杂交受体,当将其稳定转染到野生型(WT)大鼠-1细胞中时,该杂交受体可结合BK并产生cAMP。替换第二环(IC2)、第三环(IC3)、整个C末端以及远端C末端后得到的受体均可结合BK。然而,只有IC2和IC3的交换产生了能生成cAMP的受体。在这两个区域中,IC2的交换产生的cAMP生成受体效果要好得多,其产生的cAMP比WT BKB2R高出约6.6倍,或约为转染WT EP2R的大鼠-1细胞产生量的四分之一。人类和大鼠EP2R以及人类β2肾上腺素能受体对IC2的交换产生的cAMP量相等。聚焦于rBKB2R/hEP2R IC2嵌合体,由136 - 147位残基(BKB2R残基编号)组成的区域被证明含有一个cAMP生成基序。在该区域内,EP2R在136 - 141位的近端六个氨基酸(HPYFYQ)被证明对cAMP生成至关重要(比WT BKB2R高10倍)。该区域的远端部分,即142 - 147位的六个残基,对cAMP生成没有作用。另一方面,BKB2R IC2的ALV基序,即133 - 135位残基,在磷脂酰肌醇(PI)周转方面被证明很重要。替换BKB2R的整个IC2会导致PI周转不良,而保留BKB2R的AVL则可保留约一半的WT PI周转。关于受体摄取,所有IC2突变体的内吞作用与WT BKB2R相同(1小时内为60%)。然而,远端和整个C末端的交换导致内吞作用显著下降(1小时内为30%)。这些结果表明构建一个能产生cAMP的BKB2/EP2受体杂交体是可行的,DRYLALV远端的IC2区域对Gαs连接很重要,BKB2R的IC2内的LALV基序及其近端区域对Gαq和Gαi连接很重要。此外,我们的结果证实了远端C末端在决定受体摄取方面的重要性。

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