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Gsα 依赖性信号通路对于出生后功能性β细胞群体的建立是必需的。

Gsα-dependent signaling is required for postnatal establishment of a functional β-cell mass.

机构信息

Diabetes and Obesity Research Laboratory, August Pi i Sunyer Biomedical Research Institute (IDIBAPS), Rosselló 149-153, 08036, Barcelona, Spain; University of Barcelona, Barcelona, Spain.

Diabetes and Obesity Research Laboratory, August Pi i Sunyer Biomedical Research Institute (IDIBAPS), Rosselló 149-153, 08036, Barcelona, Spain; University of Barcelona, Barcelona, Spain; Centro de Investigación Biomédica en Red de Diabetes y Enfermedades Metabólicas Asociadas (CIBERDEM), Spain.

出版信息

Mol Metab. 2021 Nov;53:101264. doi: 10.1016/j.molmet.2021.101264. Epub 2021 Jun 4.

Abstract

OBJECTIVE

Early postnatal life is a critical period for the establishment of the functional β-cell mass that will sustain whole-body glucose homeostasis during the lifetime. β cells are formed from progenitors during embryonic development but undergo significant expansion in quantity and attain functional maturity after birth. The signals and pathways involved in these processes are not fully elucidated. Cyclic adenosine monophosphate (cAMP) is an intracellular signaling molecule that is known to regulate insulin secretion, gene expression, proliferation, and survival of adult β cells. The heterotrimeric G protein Gs stimulates the cAMP-dependent pathway by activating adenylyl cyclase. In this study, we sought to explore the role of Gs-dependent signaling in postnatal β-cell development.

METHODS

To study Gs-dependent signaling, we generated conditional knockout mice in which the α subunit of the Gs protein (Gsα) was ablated from β-cells using the Cre deleter line Ins1. Mice were characterized in terms of glucose homeostasis, including in vivo glucose tolerance, glucose-induced insulin secretion, and insulin sensitivity. β-cell mass was studied using histomorphometric analysis and optical projection tomography. β-cell proliferation was studied by ki67 and phospho-histone H3 immunostatining, and apoptosis was assessed by TUNEL assay. Gene expression was determined in isolated islets and sorted β cells by qPCR. Intracellular cAMP was studied in isolated islets using HTRF-based technology. The activation status of the cAMP and insulin-signaling pathways was determined by immunoblot analysis of the relevant components of these pathways in isolated islets. In vitro proliferation of dissociated islet cells was assessed by BrdU incorporation.

RESULTS

Elimination of Gsα in β cells led to reduced β-cell mass, deficient insulin secretion, and severe glucose intolerance. These defects were evident by weaning and were associated with decreased proliferation and inadequate expression of key β-cell identity and maturation genes in postnatal β-cells. Additionally, loss of Gsα caused a broad multilevel disruption of the insulin transduction pathway that resulted in the specific abrogation of the islet proliferative response to insulin.

CONCLUSION

We conclude that Gsα is required for β-cell growth and maturation in the early postnatal stage and propose that this is partly mediated via its crosstalk with insulin signaling. Our findings disclose a tight connection between these two pathways in postnatal β cells, which may have implications for using cAMP-raising agents to promote β-cell regeneration and maturation in diabetes.

摘要

目的

生命早期是建立功能性β细胞群体的关键时期,该群体将维持全身葡萄糖稳态。β细胞是在胚胎发育过程中由祖细胞形成的,但在出生后数量会显著增加,并达到功能成熟。涉及这些过程的信号和途径尚未完全阐明。环腺苷酸(cAMP)是一种细胞内信号分子,已知其可调节成熟β细胞的胰岛素分泌、基因表达、增殖和存活。异三聚体 G 蛋白 Gs 通过激活腺苷酸环化酶刺激 cAMP 依赖性途径。在这项研究中,我们试图探索 Gs 依赖性信号在出生后β细胞发育中的作用。

方法

为了研究 Gs 依赖性信号,我们使用 Cre 缺失系 Ins1 从β细胞中剔除 Gs 蛋白α亚基(Gsα),生成条件性敲除小鼠。通过体内葡萄糖耐量试验、葡萄糖诱导的胰岛素分泌试验和胰岛素敏感性试验对小鼠进行葡萄糖稳态特征分析。使用组织形态计量学分析和光学投影断层扫描技术研究β细胞质量。通过 ki67 和磷酸组蛋白 H3 免疫染色研究β细胞增殖,通过 TUNEL 测定评估细胞凋亡。通过 qPCR 确定分离胰岛和分选β细胞中的基因表达。使用基于 HTRF 的技术研究分离胰岛中的细胞内 cAMP。通过免疫印迹分析这些途径的相关成分来确定分离胰岛中 cAMP 和胰岛素信号通路的激活状态。通过 BrdU 掺入评估分离胰岛细胞的体外增殖。

结果

β细胞中 Gsα 的缺失导致β细胞质量减少、胰岛素分泌不足和严重的葡萄糖不耐受。这些缺陷在断奶时就已经明显,并伴有出生后β细胞中关键β细胞特性和成熟基因的增殖减少和表达不足。此外,Gsα 的缺失导致胰岛素转导途径的广泛多层次破坏,导致胰岛对胰岛素的增殖反应特异性丧失。

结论

我们得出结论,Gsα 是出生后早期β细胞生长和成熟所必需的,并且部分通过其与胰岛素信号的串扰来介导。我们的研究结果揭示了这两种途径在出生后β细胞中的紧密联系,这可能对使用升高 cAMP 的药物促进糖尿病中β细胞的再生和成熟具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/711c/8239471/9e92da815d00/gr1.jpg

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