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过表达谷胱甘肽过氧化物酶 1 增强胰岛素分泌中 REG2 耗竭的作用和机制。

Role and mechanism of REG2 depletion in insulin secretion augmented by glutathione peroxidase-1 overproduction.

机构信息

Department of Animal Science, Cornell University, Ithaca, NY, 14853, USA.

Department of Animal Science, Cornell University, Ithaca, NY, 14853, USA; Laboratory of Veterinary Toxicology, College of Veterinary Medicine, Seoul National University, Seoul, 08826, Republic of Korea.

出版信息

Redox Biol. 2022 Oct;56:102457. doi: 10.1016/j.redox.2022.102457. Epub 2022 Aug 30.

Abstract

We previously reported a depletion of murine regenerating islet-derived protein 2 (REG2) in pancreatic islets of glutathione peroxidase-1 (Gpx1) overexpressing (OE) mice. The present study was to explore if and how the REG2 depletion contributed to an augmented glucose stimulated insulin secretion (GSIS) in OE islets. After we verified a consistent depletion (90%, p < 0.05) of REG2 mRNA, transcript, and protein in OE islets compared with wild-type (WT) controls, we treated cultured and perifused OE islets (70 islets/sample) with REG2 (1 μg/ml or ml · min) and observed 30-40% (p < 0.05) inhibitions of GSIS by REG2. Subsequently, we obtained evidences of co-immunoprecipitation, cell surface ligand binding, and co-immunofluorescence for a ligand-receptor binding between REG2 and transmembrane, L-type voltage-dependent Ca channel (CaV1.2) in beta TC3 cells. Mutating the C-type lectin binding domain of REG2 or deglycosylating CaV1.2 removed the inhibition of REG2 on GSIS and(or) the putative binding between the two proteins. Treating cultured OE and perifused WT islets with REG2 (1 μg/ml or ml · min) decreased (p < 0.05) Ca influx triggered by glucose or KCl. An intraperitoneal (ip) injection of REG2 (2 μg/g) to OE mice (6-month old, n = 10) decreased their plasma insulin concentration (46%, p < 0.05) and elevated their plasma glucose concentration (25%, p < 0.05) over a 60 min period after glucose challenge (ip, 1 g/kg). In conclusion, our study identifies REG2 as a novel regulator of Ca influx and insulin secretion, and reveals a new cascade of GPX1/REG2/CaV1.2 to explain how REG2 depletion in OE islets could decrease its binding to CaV1.2, resulting in uninhibited Ca influx and augmented GSIS. These findings create new links to bridge redox biology, tissue regeneration, and insulin secretion.

摘要

我们之前报道过,过表达谷胱甘肽过氧化物酶 1(Gpx1)的小鼠胰岛中再生胰岛衍生蛋白 2(REG2)耗竭。本研究旨在探讨 REG2 耗竭是否以及如何导致 OE 胰岛中葡萄糖刺激的胰岛素分泌(GSIS)增强。在我们验证了 OE 胰岛中 REG2 mRNA、转录本和蛋白的一致耗竭(90%,p<0.05)与野生型(WT)对照相比后,我们用 REG2(1μg/ml 或 ml·min)处理培养和灌注的 OE 胰岛(70 个胰岛/样本),并观察到 REG2 抑制 GSIS 达 30-40%(p<0.05)。随后,我们在β TC3 细胞中获得了 REG2 与跨膜 L 型电压依赖性钙通道(CaV1.2)之间配体-受体结合的免疫共沉淀、细胞表面配体结合和共免疫荧光的证据。REG2 的 C 型凝集素结合域突变或 CaV1.2 的去糖基化消除了 REG2 对 GSIS 的抑制作用和/或这两种蛋白之间的假定结合。用 REG2(1μg/ml 或 ml·min)处理培养的 OE 和灌注的 WT 胰岛可减少(p<0.05)葡萄糖或 KCl 触发的 Ca 内流。REG2(2μg/g)腹腔内(ip)注射到 OE 小鼠(6 月龄,n=10)后,在葡萄糖挑战(ip,1g/kg)后 60 分钟内降低了其血浆胰岛素浓度(46%,p<0.05)并升高了其血浆葡萄糖浓度(25%,p<0.05)。总之,我们的研究确定 REG2 是 Ca 内流和胰岛素分泌的新调节剂,并揭示了一个新的 GPX1/REG2/CaV1.2 级联反应,以解释 OE 胰岛中 REG2 耗竭如何降低其与 CaV1.2 的结合,导致不受抑制的 Ca 内流和增强的 GSIS。这些发现为桥接氧化还原生物学、组织再生和胰岛素分泌创造了新的联系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aff2/9463454/4be059d458c2/ga1.jpg

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