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一种组成型活性突变型促甲状腺激素释放激素受体在垂体细胞中被长期下调:使用氯氮卓作为负性拮抗剂的证据。

A constitutively active mutant thyrotropin-releasing hormone receptor is chronically down-regulated in pituitary cells: evidence using chlordiazepoxide as a negative antagonist.

作者信息

Heinflink M, Nussenzveig D R, Grimberg H, Lupu-Meiri M, Oron Y, Gershengorn M C

机构信息

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

出版信息

Mol Endocrinol. 1995 Nov;9(11):1455-60. doi: 10.1210/mend.9.11.8584022.

Abstract

A carboxyl-terminus truncated mutant of the guanine nucleotide-binding (G) protein-coupled TRH receptor (TRH-R) was previously shown to exhibit constitutive, i.e. TRH-independent, activity (C335Stop TRH-R). Chlordiazepoxide (CDE), a known competitive inhibitor of TRH binding to wild-type (WT) TRH-Rs, is shown to compete for binding to C335Stop TRH-Rs also. More importantly, CDE is shown to be a negative antagonist of C335Stop TRH-Rs. CDE rapidly caused the basal rate of inositol phosphate second messenger (IP) formation to decrease in AtT-20 pituitary cells stably expressing C335Stop TRH-Rs (AtT-C335Stop cells), but not in cells expressing WT TRH-Rs (AtT-WT cells). Similar observations were made in HeLa cells transiently expressing C335Stop or WT TRH-Rs. CDE inhibition of IP formation was shown to be specific for TRH-Rs using GH4C1 cells expressing both TRH-Rs and receptors for bombesin. In these cells, CDE inhibited TRH-stimulated IP formation, but had no effect on bombesin-stimulated IP formation. The effects of chronic administration of CDE were studied. Preincubation of AtT-C335Stop cells, but not AtT-WT cells, with CDE for several hours caused an increase in cell surface receptor number (up-regulation) that led to increased TRH stimulation of inositol phosphate formation and elevation of intracellular free Ca2+. Preincubation with CDE did not affect methyl-TRH binding affinity or TRH potency in cells expressing AtT-C335Stop or in AtT-WT cells. We conclude that CDE is a negative antagonist of C335Stop TRH-Rs and that constitutively active C335Stop TRH-Rs are down-regulated in AtT-20 pituitary cells in the absence of agonist.

摘要

先前已表明,鸟嘌呤核苷酸结合(G)蛋白偶联的促甲状腺激素释放激素受体(TRH-R)的羧基末端截短突变体表现出组成性活性,即不依赖促甲状腺激素释放激素(TRH)的活性(C335Stop TRH-R)。氯氮卓(CDE)是一种已知的TRH与野生型(WT)TRH-Rs结合的竞争性抑制剂,它也能与C335Stop TRH-Rs竞争结合。更重要的是,CDE被证明是C335Stop TRH-Rs的负性拮抗剂。CDE能迅速使稳定表达C335Stop TRH-Rs的AtT-20垂体细胞(AtT-C335Stop细胞)中肌醇磷酸第二信使(IP)的基础生成速率降低,但对表达WT TRH-Rs的细胞(AtT-WT细胞)无此作用。在瞬时表达C335Stop或WT TRH-Rs的HeLa细胞中也有类似观察结果。利用同时表达TRH-Rs和蛙皮素受体的GH4C1细胞表明,CDE对IP生成的抑制作用对TRH-Rs具有特异性。在这些细胞中,CDE抑制TRH刺激的IP生成,但对蛙皮素刺激的IP生成无影响。研究了长期给予CDE的作用。用CDE对AtT-C335Stop细胞而非AtT-WT细胞进行数小时预孵育,导致细胞表面受体数量增加(上调),进而使TRH刺激的肌醇磷酸生成增加以及细胞内游离Ca2+升高。在表达AtT-C335Stop的细胞或AtT-WT细胞中,用CDE预孵育不影响甲基TRH的结合亲和力或TRH的效能。我们得出结论,CDE是C335Stop TRH-Rs的负性拮抗剂,并且在没有激动剂的情况下,组成性激活的C335Stop TRH-Rs在AtT-20垂体细胞中会下调。

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