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小鼠中G蛋白偶联胆汁酸受体1(Gpbar1/M-Bar)的靶向破坏。

Targeted disruption of G protein-coupled bile acid receptor 1 (Gpbar1/M-Bar) in mice.

作者信息

Maruyama Takaharu, Tanaka Kenichi, Suzuki Jun, Miyoshi Hiroyuki, Harada Naomoto, Nakamura Takao, Miyamoto Yasuhisa, Kanatani Akio, Tamai Yoshitaka

机构信息

Tsukuba Research Institute, Banyu Pharmaceutical Co., Ltd, Okubo 3, Tsukuba, Ibaraki 300-2611, Japan.

出版信息

J Endocrinol. 2006 Oct;191(1):197-205. doi: 10.1677/joe.1.06546.

Abstract

G protein-coupled bile acid receptor 1 (Gpbar1/M-Bar) is a novel G protein-coupled receptor for bile acid. Tissue distribution and cell-type specificity of Gpbar1 mRNA suggest a potential role for the receptor in the endocrine system; however, the precise physiological role of Gpbar1 still remains to be elucidated. To investigate the role of Gpbar1 in vivo, the Gpbar1 gene was disrupted in mice. In homozygous mice, total bile acid pool size was significantly decreased by 21-25% compared with that of the wild-type mice, suggesting that Gpbar1 contributes to bile acid homeostasis. In order to assess the impact of Gpbar1 deficiency in bile acid homeostasis more precisely, Gpbar1 homozygous mice were fed a high-fat diet for 2 months. As a result, female Gpbar1 homozygous mice showed significant fat accumulation with body weight gain compared with that of the wild-type mice. These findings were also observed in heterozygous mice to the same extent. Although the precise mechanism for fat accumulation in female Gpbar1 homozygous mice remains to be addressed, these data indicate that Gpbar1 is a potential new player in energy homeostasis. Thus, Gpbar1-deficient mice are useful in elucidating new physiological roles for Gpbar1.

摘要

G蛋白偶联胆汁酸受体1(Gpbar1/M-Bar)是一种新型的胆汁酸G蛋白偶联受体。Gpbar1 mRNA的组织分布和细胞类型特异性表明该受体在内分泌系统中可能发挥作用;然而,Gpbar1的确切生理作用仍有待阐明。为了研究Gpbar1在体内的作用,在小鼠中破坏了Gpbar1基因。在纯合小鼠中,总胆汁酸池大小与野生型小鼠相比显著降低了21-25%,这表明Gpbar1有助于胆汁酸稳态。为了更精确地评估Gpbar1缺陷对胆汁酸稳态的影响,给Gpbar1纯合小鼠喂食高脂饮食2个月。结果,与野生型小鼠相比,雌性Gpbar1纯合小鼠随着体重增加出现了显著的脂肪堆积。在杂合小鼠中也观察到了同样程度的这些发现。尽管雌性Gpbar1纯合小鼠脂肪堆积的确切机制仍有待探讨,但这些数据表明Gpbar1是能量稳态中一个潜在的新参与者。因此,Gpbar1缺陷小鼠有助于阐明Gpbar1的新生理作用。

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