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醛酮还原酶 1c19 缺失并不影响小鼠胰岛的胰岛素分泌。

Aldo-ketoreductase 1c19 ablation does not affect insulin secretion in murine islets.

机构信息

Department of Medicine and Naomi Berrie Diabetes Center, Vagelos College of Physicians & Surgeons of Columbia University, New York, New York, United States of America.

出版信息

PLoS One. 2021 Nov 29;16(11):e0260526. doi: 10.1371/journal.pone.0260526. eCollection 2021.

Abstract

Beta cell failure is a critical feature of diabetes. It includes defects of insulin production, secretion, and altered numbers of hormone-producing cells. In previous work, we have shown that beta cell failure is mechanistically linked to loss of Foxo1 function. This loss of function likely results from increased Foxo1 protein degradation, due to hyperacetylation of Foxo1 from increased nutrient turnover. To understand the mechanisms of Foxo1-related beta cell failure, we performed genome-wide analyses of its target genes, and identified putative mediators of sub-phenotypes of cellular dysfunction. Chromatin immunoprecipitation analyses demonstrated a striking pattern of Foxo1 binding to the promoters of a cluster of aldo-ketoreductases on chromosome 13: Akr1c12, Akr1c13, Akr1c19. Of these, Akr1c19 has been reported as a marker of Pdx1-positive endodermal progenitor cells. Here we show that Akr1c19 expression is dramatically decreased in db/db islets. Thus, we investigated whether Akr1c19 is involved in beta cell function. We performed gain- and loss-of-function experiments in cultured beta cells and generated Akr1c19 knockout mice. We show that Foxo1 and HNF1a cooperatively regulate Akr1c19 expression. Nonetheless, functional characterization of Akr1c19 both using islets and knockout mice did not reveal abnormalities on glucose homeostasis. We conclude that reduced expression of Akr1c19 is not sufficient to affect islet function.

摘要

β细胞衰竭是糖尿病的一个关键特征。它包括胰岛素产生、分泌的缺陷,以及激素产生细胞数量的改变。在之前的工作中,我们已经表明,β细胞衰竭与 Foxo1 功能丧失有关。这种功能丧失可能是由于 Foxo1 蛋白降解增加,这是由于营养物质周转率增加导致 Foxo1 的过度乙酰化。为了了解与 Foxo1 相关的β细胞衰竭的机制,我们对其靶基因进行了全基因组分析,并鉴定出了细胞功能障碍亚表型的潜在介质。染色质免疫沉淀分析表明,Foxo1 与染色体 13 上一组醛酮还原酶(Akr1c12、Akr1c13、Akr1c19)的启动子结合具有惊人的模式:Akr1c19 已被报道为 Pdx1 阳性内胚层祖细胞的标志物。在这里,我们表明 Akr1c19 在 db/db 胰岛中的表达显著降低。因此,我们研究了 Akr1c19 是否参与β细胞功能。我们在培养的β细胞中进行了增益和失能实验,并生成了 Akr1c19 敲除小鼠。我们表明,Foxo1 和 HNF1a 协同调节 Akr1c19 的表达。尽管如此,使用胰岛和敲除小鼠对 Akr1c19 的功能特征分析并没有揭示葡萄糖稳态的异常。我们得出结论,Akr1c19 的表达减少不足以影响胰岛功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4e70/8629236/4d722f92c7b1/pone.0260526.g001.jpg

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