内科学
内分泌学
高胰岛素血症
胰岛素
糖尿病前期
胰岛素抵抗
分泌物
胰岛素振荡
生物
糖耐量受损
2型糖尿病
糖尿病
医学
作者
Joan Sabadell‐Basallote,Joan Sabadell‐Basallote,Joan Sabadell‐Basallote,Joan Sabadell‐Basallote,Joan Sabadell‐Basallote,Joan Sabadell‐Basallote,Joan Sabadell‐Basallote,Joan Sabadell‐Basallote,Joan Sabadell‐Basallote,Joan Sabadell‐Basallote,Joan Sabadell‐Basallote,Joan Sabadell‐Basallote,Joan Sabadell‐Basallote,Joan Sabadell‐Basallote,Joan Sabadell‐Basallote,Joan Sabadell‐Basallote,Joan Sabadell‐Basallote,Joan Sabadell‐Basallote,Joan Sabadell‐Basallote,Joan Sabadell‐Basallote
摘要
Pancreatic β-cell dysfunction is a key feature of type 2 diabetes, and novel regulators of insulin secretion are desirable. Here we report that the succinate receptor (SUCNR1) is expressed in β-cells and is up-regulated in hyperglycemic states in mice and humans. We found that succinate acts as a hormone-like metabolite and stimulates insulin secretion via a SUCNR1-Gq-PKC-dependent mechanism in human β-cells. Mice with β-cell-specific Sucnr1 deficiency exhibit impaired glucose tolerance and insulin secretion on a high-fat diet, indicating that SUCNR1 is essential for preserving insulin secretion in diet-induced insulin resistance. Patients with impaired glucose tolerance show an enhanced nutritional-related succinate response, which correlates with the potentiation of insulin secretion during intravenous glucose administration. These data demonstrate that the succinate/SUCNR1 axis is activated by high glucose and identify a GPCR-mediated amplifying pathway for insulin secretion relevant to the hyperinsulinemia of prediabetic states.
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