Wise Helen, Chow Kevin B S, Wing Kam Yiu, Kobayashi Takuya, Tse Dicky L Y, Cheng Christopher H K
Department of Pharmacology, Faculty of Medicine, The Chinese University of Hong Kong, Shatin, New Territories, Hong Kong SAR, China.
J Recept Signal Transduct Res. 2003 Feb;23(1):83-97. doi: 10.1081/rrs-120018762.
Mouse prostacyclin (mIP) receptors transiently expressed in Chinese hamster ovary (CHO) cells activated both adenylyl cyclase and phospholipase C, with a 33-fold preference for signaling through Gs. The prostacyclin (IP) receptor agonists cicaprost, iloprost, carbacyclin, and prostaglandin E1 showed a similar order of potency for activation of both signaling pathways in cells transiently transfected with the mIP and the chimeric prostacyclin/prostaglandin D2 (IPN-VII/DPC and IPN-V/DPVI-C) receptors. Substitution of the carboxyl-terminal tail of the prostacyclin receptor with the corresponding region of the mDP receptor (IPN-VII/DPC) produced a receptor with increased coupling to both Gs and Gq. However, this increased G-protein coupling was lost in the IPN-V/DPVI-C receptor. The observation that both these chimeric receptors can activate phospholipase C indicates that the carboxyl-terminal tail of the IP receptor is not entirely responsible for its ability to couple to Gq. Site-directed mutagenesis studies suggest that isoleucine at position 323 in the IPN-VII/DPC receptor plays an important role in mediating the increased potency of this chimeric receptor.
在中国仓鼠卵巢(CHO)细胞中瞬时表达的小鼠前列环素(mIP)受体可激活腺苷酸环化酶和磷脂酶C,通过Gs信号传导的偏好性是33倍。前列环素(IP)受体激动剂西卡前列素、伊洛前列素、卡前列素和前列腺素E1在瞬时转染mIP和嵌合前列环素/前列腺素D2(IPN-VII/DPC和IPN-V/DPVI-C)受体的细胞中,对激活这两种信号通路表现出相似的效力顺序。用mDP受体的相应区域替换前列环素受体的羧基末端尾巴(IPN-VII/DPC)产生了一种与Gs和Gq偶联增加的受体。然而,这种增加的G蛋白偶联在IPN-V/DPVI-C受体中丧失。这两种嵌合受体都能激活磷脂酶C的观察结果表明,IP受体的羧基末端尾巴并非完全负责其与Gq偶联的能力。定点诱变研究表明,IPN-VII/DPC受体中第323位的异亮氨酸在介导这种嵌合受体效力增加方面起重要作用。