Urocortin3 contributes to paracrine inhibition of islet alpha cells in mice

IF 3.4 3区 医学 Q2 ENDOCRINOLOGY & METABOLISM Journal of Endocrinology Pub Date : 2024-04-01 DOI:10.1530/joe-24-0018
Glyn M. Noguchi, Vincent C. Castillo, Cynthia J. Donaldson, Marcus R. Flisher, Ariana T. Momen, Alan Saghatelian, Mark O. Huising
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Abstract

Pancreatic alpha cell activity and glucagon secretion lowers as glucose levels increase. While part of the decrease is regulated by glucose itself, paracrine signaling by their neighboring beta and delta cells also plays an important role. Somatostatin from delta cells is an important local inhibitor of alpha cells at high glucose. Additionally, Urocortin3 (UCN3) is a hormone that is co-released from beta cells with insulin and acts locally to potentiate somatostatin secretion from delta cells. UCN3 thus inhibits insulin secretion via a negative feedback loop with delta cells, but its role with respect to alpha cells and glucagon secretion is not understood. We hypothesize that the somatostatin-driven glucagon inhibition at high glucose is regulated in part by UCN3 from beta cells. Here, we use a combination of live functional Ca2+ and cAMP imaging as well as direct glucagon secretion measurement, all from alpha cells in intact mouse islets, to determine the contributions of UCN3 to alpha cell behavior. Exogenous UCN3 treatment decreased alpha cell Ca2+ and cAMP levels and inhibited glucagon release. Blocking endogenous UCN3 signaling increased alpha cell Ca2+ by 26.8 ± 7.6%, but this did not result in increased glucagon release at high glucose. Furthermore, constitutive deletion of Ucn3 did not increase Ca2+ activity or glucagon secretion relative to controls. UCN3 is thus capable of inhibiting mouse alpha cells, but, given the subtle effects of endogenous UCN3 signaling on alpha cells, we propose that UCN3-driven somatostatin may serve to regulate local paracrine glucagon levels in the islet instead of inhibiting gross systemic glucagon release.

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尿皮质素3有助于对小鼠胰岛α细胞进行旁分泌抑制
胰腺α细胞的活性和胰高血糖素分泌会随着葡萄糖水平的升高而降低。虽然这种降低部分是由葡萄糖本身调节的,但邻近的β细胞和δ细胞发出的旁分泌信号也起着重要作用。在高血糖时,来自δ细胞的促生长素是α细胞的重要局部抑制剂。此外,Urocortin3(UCN3)是一种与胰岛素共同从β细胞释放的激素,它在局部能增强来自delta细胞的体生长抑素分泌。因此,UCN3 通过与 delta 细胞的负反馈环路抑制胰岛素分泌,但它对α细胞和胰高血糖素分泌的作用尚不清楚。我们推测,在高血糖时,由体司他丁驱动的胰高血糖素抑制作用部分是由β细胞的 UCN3 调节的。在这里,我们结合使用活体功能性 Ca2+ 和 cAMP 成像以及直接胰高血糖素分泌测量,所有这些都来自完整小鼠胰岛中的α细胞,以确定 UCN3 对α细胞行为的贡献。外源性 UCN3 处理降低了α细胞的 Ca2+ 和 cAMP 水平,抑制了胰高血糖素的释放。阻断内源性 UCN3 信号传导可使α细胞 Ca2+ 增加 26.8 ± 7.6%,但这并不会导致高糖时胰高血糖素释放增加。此外,与对照组相比,组成性删除 Ucn3 不会增加 Ca2+ 活性或胰高血糖素分泌。因此,UCN3 能够抑制小鼠α细胞,但考虑到内源性 UCN3 信号传导对α细胞的微妙影响,我们认为 UCN3 驱动的体生长抑素可能起到调节胰岛局部旁分泌胰高血糖素水平的作用,而不是抑制全身胰高血糖素的大量释放。
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来源期刊
Journal of Endocrinology
Journal of Endocrinology 医学-内分泌学与代谢
CiteScore
7.90
自引率
2.50%
发文量
113
审稿时长
4-8 weeks
期刊介绍: Journal of Endocrinology is a leading global journal that publishes original research articles, reviews and science guidelines. Its focus is on endocrine physiology and metabolism, including hormone secretion; hormone action; biological effects. The journal publishes basic and translational studies at the organ, tissue and whole organism level.
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