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大鼠胰岛中一种具有葡萄糖调节表达的新型囊泡γ-氨基丁酸转运体亚型的鉴定与特性分析

Identification and characterization of a novel isoform of the vesicular gamma-aminobutyric acid transporter with glucose-regulated expression in rat islets.

作者信息

Suckow A T, Sweet I R, Van Yserloo B, Rutledge E A, Hall T R, Waldrop M, Chessler S D

机构信息

Department of Medicine, University of California, San Diego, Leichtag Biomedical Research Building, 9500 Gilman Drive MC 0726, La Jolla, California 92093-0726, USA.

出版信息

J Mol Endocrinol. 2006 Feb;36(1):187-99. doi: 10.1677/jme.1.01866.

Abstract

Pancreatic islets are unique outside the nervous system in that they contain high levels of the inhibitory neurotransmitter gamma-aminobutyric acid (GABA), synthesized by the enzyme glutamic acid decarboxylase (GAD). Since the role that GABA plays in the islet and the mechanisms whereby the two major GAD isoforms (GAD65 and GAD67) function as diabetes-associated autoantigens are unknown, continued characterization of the islet GAD-GABA system is important. We previously demonstrated that the GABA and glycine transporter vesicular inhibitory amino acid transporter (VIAAT also known as VGAT) is present in rat islets. Here we identify a novel 52 kDa variant of VIAAT in rat islets: VIAAT-52 (V52). V52 is an amino-terminally truncated form of VIAAT (V57) that likely results from utilization of a downstream start site of translation. V57 and V52 display different patterns of post-translational modification and cellular expression. Our results have indicated that islet content of V52, but not V57, is responsive to changes in glucose concentration and other extracellular conditions. VIAAT is expressed in the islet alpha cells, but there have been conflicting findings regarding the presence of VIAAT in the beta cells. Here we have also provided additional evidence for the presence of VIAAT in islet beta cells and show that the beta cell line INS-1 expresses V57. V52 may be better adapted than V57 to the unique rat alpha cell GAD-GABA system, which lacks GAD65 and in which VIAAT traffics to secretory granules rather than just to synaptic microvesicles.

摘要

胰岛在神经系统之外独具特色,因为它们含有高水平的抑制性神经递质γ-氨基丁酸(GABA),该物质由谷氨酸脱羧酶(GAD)合成。由于GABA在胰岛中所起的作用以及两种主要的GAD同工型(GAD65和GAD67)作为糖尿病相关自身抗原发挥作用的机制尚不清楚,因此持续深入研究胰岛GAD - GABA系统具有重要意义。我们之前证明,GABA和甘氨酸转运体囊泡抑制性氨基酸转运体(VIAAT,也称为VGAT)存在于大鼠胰岛中。在此,我们在大鼠胰岛中鉴定出一种新型的52 kDa的VIAAT变体:VIAAT - 52(V52)。V52是VIAAT(V57)氨基末端截短的形式,可能是由于利用了下游的翻译起始位点所致。V57和V52表现出不同的翻译后修饰模式和细胞表达模式。我们的结果表明,V52而非V57的胰岛含量对葡萄糖浓度和其他细胞外条件的变化有反应。VIAAT在胰岛α细胞中表达,但关于VIAAT在β细胞中的存在情况存在相互矛盾的研究结果。在此,我们还提供了更多证据证明VIAAT存在于胰岛β细胞中,并表明β细胞系INS - 1表达V57。V52可能比V57更能适应独特的大鼠α细胞GAD - GABA系统,该系统缺乏GAD65,且VIAAT转运至分泌颗粒而非仅转运至突触微泡。

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