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胰岛素基因转录的调控

Regulation of insulin gene transcription.

作者信息

Melloul D, Marshak S, Cerasi E

机构信息

Department of Endocrinology and Metabolism, Hadassah University Hospital, Jerusalem, Israel.

出版信息

Diabetologia. 2002 Mar;45(3):309-26. doi: 10.1007/s00125-001-0728-y.

Abstract

The mammalian insulin gene is exclusively expressed in the beta cells of the endocrine pancreas. Two decades of intensive physiological and biochemical studies have led to the identification of regulatory sequence motifs along the insulin promoter and to the isolation of transcription factors which interact to activate gene transcription. The majority of the islet-restricted (BETA2, PDX-1, RIP3b1-Act/C1) and ubiquitous (E2A, HEB) insulin-binding proteins have been characterized. Transcriptional regulation results not only from specific combinations of these activators through DNA-protein and protein-protein interactions, but also from their relative nuclear concentrations, generating a cooperativity and transcriptional synergism unique to the insulin gene. Their DNA binding activity and their transactivating potency can be modified in response to nutrients (glucose, NEFA) or hormonal stimuli (insulin, leptin, glucagon like peptide-1, growth hormone, prolactin) through kinase-dependent signalling pathways (PI3-K, p38MAPK, PKA, CaMK) modulating their affinities for DNA and/or for each other. From the overview of the research presented, it is clear that much more study is required to fully comprehend the mechanisms involved in the regulated-expression of the insulin gene in the beta cell to prevent its impairment in diabetes.

摘要

哺乳动物胰岛素基因仅在内分泌胰腺的β细胞中表达。二十年来深入的生理学和生物化学研究,已导致沿着胰岛素启动子鉴定出调控序列基序,并分离出相互作用以激活基因转录的转录因子。大多数胰岛特异性(BETA2、PDX-1、RIP3b1-Act/C1)和普遍存在的(E2A、HEB)胰岛素结合蛋白已得到表征。转录调控不仅源于这些激活剂通过DNA-蛋白质和蛋白质-蛋白质相互作用的特定组合,还源于它们在细胞核中的相对浓度,从而产生胰岛素基因特有的协同作用和转录协同效应。它们的DNA结合活性和转录激活能力可通过激酶依赖性信号通路(PI3-K、p38MAPK、PKA、CaMK)响应营养物质(葡萄糖、非酯化脂肪酸)或激素刺激(胰岛素、瘦素、胰高血糖素样肽-1、生长激素、催乳素)进行调节,这些信号通路可调节它们对DNA和/或彼此的亲和力。从所呈现的研究综述来看,显然需要进行更多研究,以充分理解β细胞中胰岛素基因调控表达所涉及的机制,从而预防其在糖尿病中的受损。

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