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重新审视细胞内葡萄糖在胰腺细胞葡萄糖刺激胰岛素分泌的细胞外调节之外的作用

(Re-)Viewing Role of Intracellular Glucose Beyond Extracellular Regulation of Glucose-Stimulated Insulin Secretion by Pancreatic Cells.

作者信息

Pramanik Tapabrata, Verma Prachi, Mittal Aditya

机构信息

Kusuma School of Biological Sciences, Indian Institute of Technology Delhi (IIT Delhi), Hauz Khas, New Delhi 110016, India.

Supercomputing Facility for Bioinformatics and Computational Biology (SCFBio), IIT Delhi, Hauz Khas, New Delhi, 110016, India.

出版信息

ACS Omega. 2024 Feb 29;9(10):11755-11768. doi: 10.1021/acsomega.3c09171. eCollection 2024 Mar 12.

Abstract

For glucose-stimulated insulin secretion (GSIS) by pancreatic β-cells in animals, it is believed that ATP generated from glucose metabolism is primarily responsible. However, this ignores two well-established aspects in literature: (a) intracellular ATP generation from other sources resulting in an overall pool of ATP, regardless of the original source, and (b) that intracellular glucose transport is 10- to 100-fold higher than intracellular glucose phosphorylation in β-cells. The latter especially provides an earlier unaddressed, but highly appealing, observation pertaining to (at least transient) the presence of intracellular glucose molecules. Could these intracellular glucose molecules be responsible for the specificity of GSIS to glucose (instead of the widely believed ATP production from its metabolism)? In this work, we provide a comprehensive compilation of literature on glucose and GSIS using various cellular systems - all studies focus only on the extracellular role of glucose in GSIS. Further, we carried out a comprehensive analysis of differential gene expression in Mouse Insulinoma 6 (MIN6) cells, exposed to low and high extracellular glucose concentrations (EGC), from the existing whole transcriptome data. The expression of other genes involved in glycolysis, Krebs cycle, and electron transport chain was found to be unaffected by EGC, except , , and . Remarkably, 3 upregulated genes (, , ) in high EGC were identified to have an association with cellular secretion. Using glucose as a possible ligand for the 3 proteins, computational investigations were carried out (that will require future 'wet validation', both in vitro and in vivo, e.g., using primary islets and animal models). The glucose-affinity/binding scores (in kcal/mol) obtained were also compared with glucose binding scores for positive controls (GCK and GLUT2), along with negative controls (RPA1, KU70-80, POLA1, ACAA1A, POLR1A). The binding affinity scores of glucose molecules for the 3 proteins were found to be closer to positive controls. Therefore, we report the glucose binding ability of 3 secretion-related proteins and a possible direct role of intracellular glucose molecules in GSIS.

摘要

对于动物胰腺β细胞的葡萄糖刺激胰岛素分泌(GSIS),人们认为葡萄糖代谢产生的ATP起主要作用。然而,这忽略了文献中两个已被充分证实的方面:(a)其他来源产生的细胞内ATP形成了一个总的ATP池,而不论其原始来源如何;(b)β细胞中细胞内葡萄糖转运比细胞内葡萄糖磷酸化高10到100倍。后者尤其提供了一个早期未被探讨但极具吸引力的观察结果,即关于(至少是短暂的)细胞内葡萄糖分子的存在。这些细胞内葡萄糖分子是否是GSIS对葡萄糖特异性的原因(而不是普遍认为的其代谢产生ATP)?在这项工作中,我们全面汇编了使用各种细胞系统研究葡萄糖和GSIS的文献——所有研究都仅关注葡萄糖在GSIS中的细胞外作用。此外,我们利用现有的全转录组数据,对暴露于低和高细胞外葡萄糖浓度(EGC)的小鼠胰岛素瘤6(MIN6)细胞中的差异基因表达进行了全面分析。发现参与糖酵解、三羧酸循环和电子传递链的其他基因的表达不受EGC影响,除了 、 和 。值得注意的是,在高EGC中上调的3个基因( 、 、 )被确定与细胞分泌有关。以葡萄糖作为这3种蛋白质的可能配体,进行了计算研究(这需要未来在体外和体内进行“湿实验验证”,例如使用原代胰岛和动物模型)。还将获得的葡萄糖亲和力/结合分数(以千卡/摩尔为单位)与阳性对照(GCK和GLUT2)以及阴性对照(RPA1、KU70 - 80、POLA1、ACAA1A、POLR1A)的葡萄糖结合分数进行了比较。发现葡萄糖分子对这3种蛋白质的结合亲和力分数更接近阳性对照。因此,我们报告了3种分泌相关蛋白质的葡萄糖结合能力以及细胞内葡萄糖分子在GSIS中可能的直接作用。

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