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营养素对胰岛β细胞分泌能力和胰岛素生成的调节作用。

Nutrient Regulation of Pancreatic Islet β-Cell Secretory Capacity and Insulin Production.

机构信息

Fraternal Order of Eagles Diabetes Research Center, University of Iowa, Iowa City, IA 52242, USA.

Division of Endocrinology and Metabolism, Department of Internal Medicine, University of Iowa, Iowa City, IA 52242, USA.

出版信息

Biomolecules. 2022 Feb 20;12(2):335. doi: 10.3390/biom12020335.

Abstract

Pancreatic islet β-cells exhibit tremendous plasticity for secretory adaptations that coordinate insulin production and release with nutritional demands. This essential feature of the β-cell can allow for compensatory changes that increase secretory output to overcome insulin resistance early in Type 2 diabetes (T2D). Nutrient-stimulated increases in proinsulin biosynthesis may initiate this β-cell adaptive compensation; however, the molecular regulators of secretory expansion that accommodate the increased biosynthetic burden of packaging and producing additional insulin granules, such as enhanced ER and Golgi functions, remain poorly defined. As these adaptive mechanisms fail and T2D progresses, the β-cell succumbs to metabolic defects resulting in alterations to glucose metabolism and a decline in nutrient-regulated secretory functions, including impaired proinsulin processing and a deficit in mature insulin-containing secretory granules. In this review, we will discuss how the adaptative plasticity of the pancreatic islet β-cell's secretory program allows insulin production to be carefully matched with nutrient availability and peripheral cues for insulin signaling. Furthermore, we will highlight potential defects in the secretory pathway that limit or delay insulin granule biosynthesis, which may contribute to the decline in β-cell function during the pathogenesis of T2D.

摘要

胰岛β细胞在分泌适应方面表现出巨大的可塑性,可协调胰岛素的产生和释放与营养需求。β细胞的这一重要特征可以允许代偿性改变,增加分泌输出,以克服 2 型糖尿病(T2D)早期的胰岛素抵抗。胰岛素原生物合成的营养刺激增加可能引发这种β细胞适应性补偿;然而,适应这种增加的生物合成负担的分泌扩张的分子调节剂,包括增强内质网和高尔基体功能,仍未被很好地定义。随着这些适应性机制的失效和 T2D 的进展,β细胞屈服于代谢缺陷,导致葡萄糖代谢和营养调节的分泌功能发生改变,包括胰岛素原加工受损和成熟含胰岛素分泌颗粒不足。在这篇综述中,我们将讨论胰岛β细胞分泌程序的适应性可塑性如何允许胰岛素的产生与营养供应和胰岛素信号的外周线索相匹配。此外,我们将强调分泌途径中的潜在缺陷,这些缺陷限制或延迟胰岛素颗粒的生物合成,这可能导致 T2D 发病过程中β细胞功能的下降。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/53a9/8869698/39549fa96376/biomolecules-12-00335-g001.jpg

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