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全长 GPRC6A 基因敲除小鼠维持代谢和骨骼稳态。

Metabolic and skeletal homeostasis are maintained in full locus GPRC6A knockout mice.

机构信息

Department of Drug Design and Pharmacology, Faculty of Health and Medical Sciences, University of Copenhagen, Universitetsparken 2, DK-2100, Copenhagen, Denmark.

Bone Research Program, ANZAC Research Institute, University of Sydney, Sydney, Australia.

出版信息

Sci Rep. 2019 Apr 12;9(1):5995. doi: 10.1038/s41598-019-41921-8.

Abstract

The G protein-coupled receptor class C, group 6, subtype A (GPRC6A) is suggested to have a physiological function in glucose and bone metabolism, although the precise role lacks consensus due to varying findings in different knockout (KO) mouse models and inconsistent findings on the role of osteocalcin, a proposed GPRC6A agonist. We have further characterized a full locus GPRC6A KO model with respect to energy metabolism, including a long-term high-dose glucocorticoid metabolic challenge. Additionally, we analyzed the microarchitecture of tibiae from young, middle-aged and aged GPRC6A KO mice and wildtype (WT) littermates. Compared to WT, vehicle-treated KO mice presented with normal body composition, unaltered insulin sensitivity and basal serum insulin and glucose levels. Corticosterone (CS) treatment resulted in insulin resistance, abnormal fat accrual, loss of lean mass and suppression of serum osteocalcin levels in both genotypes. Interestingly, serum osteocalcin and skeletal osteocalcin mRNA levels were significantly lower in vehicle-treated GPRC6A KO mice compared to WT animals. However, WT and KO age groups did not differ in long bone mass and structure assessed by micro-computed tomography. We conclude that GPRC6A is not involved in glucose metabolism under normal physiological conditions, nor does it mediate glucocorticoid-induced dysmetabolism in mice. Moreover, GPRC6A does not appear to possess a direct, non-compensable role in long bone microarchitecture under standard conditions.

摘要

G 蛋白偶联受体家族 C,第 6 组,A 亚型(GPRC6A)被认为在葡萄糖和骨骼代谢中具有生理功能,尽管由于不同 knockout(KO)小鼠模型中的不同发现以及对骨钙素作用的不一致发现,其确切作用缺乏共识,骨钙素是一种被提议的 GPRC6A 激动剂。我们进一步研究了全长 GPRC6A KO 模型在能量代谢方面的特征,包括长期高剂量糖皮质激素代谢挑战。此外,我们分析了来自年轻、中年和老年 GPRC6A KO 小鼠和野生型(WT)同窝仔鼠的胫骨微结构。与 WT 相比,未处理的 KO 小鼠表现出正常的身体成分、未改变的胰岛素敏感性以及基础血清胰岛素和葡萄糖水平。皮质酮(CS)处理导致胰岛素抵抗、异常脂肪积累、瘦体重损失以及两种基因型的血清骨钙素水平抑制。有趣的是,与 WT 动物相比,未处理的 GPRC6A KO 小鼠的血清骨钙素和骨骼骨钙素 mRNA 水平显著降低。然而,WT 和 KO 年龄组在长骨质量和微计算机断层扫描评估的结构方面没有差异。我们得出结论,GPRC6A 在正常生理条件下不参与葡萄糖代谢,也不介导糖皮质激素诱导的小鼠代谢紊乱。此外,在标准条件下,GPRC6A 似乎没有直接的、不可补偿的长骨微结构作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4002/6461682/fda27a0a24e3/41598_2019_41921_Fig1_HTML.jpg

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