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Metabolomic analysis of pancreatic β-cell insulin release in response to glucose

机译:葡萄糖对胰腺β细胞胰岛素释放的代谢组学分析

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Defining the key metabolic pathways that are important for fuel-regulated insulin secretion is critical to providing a complete picture of how nutrients regulate insulin secretion. We have performed a detailed metabolomics study of the clonal β-cell line 832/13 using a gas chromatography-mass spectrometer (GC-MS) to investigate potential coupling factors that link metabolic pathways to insulin secretion. Mid-polar and polar metabolites, extracted from the 832/13 β -cells, were derivatized and then run on a GC/MS to identify and quantify metabolite concentrations. Three hundred fifty-five out of 527 chromatographic peaks could be identified as metabolites by our metabolomic platform. These identified metabolites allowed us to perform a systematic analysis of key pathways involved in glucose-stimulated insulin secretion (GSIS). Of these metabolites, 41 were consistently identified as biomarker for GSIS by orthogonal projections to latent structures (OPLS). Most of the identified metabolites are from common metabolic pathways including glycolytic, sorbitol-aldose reductase pathway, pentose phosphate pathway, and the TCA cycle suggesting these pathways play an important role in GSIS. Lipids and related products were also shown to contribute to the clustering of high glucose sample groups. Amino acids lysine, tyrosine, alanine and serine were upregulated by glucose whereas aspartic acid was downregulated by glucose suggesting these amino acids might play a key role in GSIS. In summary, a coordinated signaling cascade elicited by glucose metabolism in pancreatic β-cells is revealed by our metabolomics platform providing a new conceptual framework for future research and/or drug discovery.
机译:定义对于燃料调节的胰岛素分泌至关重要的关键代谢途径,对于全面了解营养素如何调节胰岛素分泌至关重要。我们已经使用气相色谱-质谱仪(GC-MS)对克隆的β细胞832/13系进行了详细的代谢组学研究,以研究将代谢途径与胰岛素分泌联系起来的潜在耦合因子。对从832/13β细胞中提取的中极性和极性代谢物进行衍生化,然后在GC / MS上运行以鉴定和量化代谢物的浓度。我们的代谢组学平台可将527个色谱峰中的355个鉴定为代谢物。这些鉴定出的代谢产物使我们能够对涉及葡萄糖刺激的胰岛素分泌(GSIS)的关键途径进行系统的分析。在这些代谢产物中,通过对潜在结构的正交投影(OPLS),始终将41种代谢物鉴定为GSIS的生物标记。大多数鉴定出的代谢物来自常见的代谢途径,包括糖酵解,山梨糖醇-醛糖还原酶途径,磷酸戊糖途径和TCA循环,表明这些途径在GSIS中起重要作用。脂质和相关产品也被证明有助于高血糖样品组的聚集。葡萄糖会上调氨基酸赖氨酸,酪氨酸,丙氨酸和丝氨酸,而葡萄糖会下调天冬氨酸,表明这些氨基酸可能在GSIS中起关键作用。总之,我们的代谢组学平台揭示了胰岛β细胞中葡萄糖代谢引发的协调性信号传导级联,为未来的研究和/或药物发现提供了新的概念框架。

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