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GPR88 揭示了初级纤毛作为 GPCR 串扰选择性绝缘子的独特功能。

GPR88 reveals a discrete function of primary cilia as selective insulators of GPCR cross-talk.

机构信息

Department of Psychiatry, University of California San Francisco, San Francisco, California, United States of America.

出版信息

PLoS One. 2013 Aug 2;8(8):e70857. doi: 10.1371/journal.pone.0070857. Print 2013.

Abstract

A number of G protein-coupled receptors (GPCRs) localize to primary cilia but the functional significance of cilia to GPCR signaling remains incompletely understood. We investigated this question by focusing on the D1 dopamine receptor (D1R) and beta-2 adrenergic receptor (B2AR), closely related catecholamine receptors that signal by stimulating production of the diffusible second messenger cyclic AMP (cAMP) but differ in localization relative to cilia. D1Rs robustly concentrate on cilia of IMCD3 cells, as shown previously in other ciliated cell types, but disrupting cilia did not affect D1R surface expression or ability to mediate a concentration-dependent cAMP response. By developing a FRET-based biosensor suitable for resolving intra- from extra- ciliary cAMP changes, we found that the D1R-mediated cAMP response is not restricted to cilia and extends into the extra-ciliary cytoplasm. Conversely the B2AR, which we show here is effectively excluded from cilia, also generated a cAMP response in both ciliary and extra-ciliary compartments. We identified a distinct signaling effect of primary cilia through investigating GPR88, an orphan GPCR that is co-expressed with the D1R in brain, and which we show here is targeted to cilia similarly to the D1R. In ciliated cells, mutational activation of GPR88 strongly reduced the D1R-mediated cAMP response but did not affect the B2AR-mediated response. In marked contrast, in non-ciliated cells, GPR88 was distributed throughout the plasma membrane and inhibited the B2AR response. These results identify a discrete 'insulating' function of primary cilia in conferring selectivity on integrated catecholamine signaling through lateral segregation of receptors, and suggest a cellular activity of GPR88 that might underlie its effects on dopamine-dependent behaviors.

摘要

许多 G 蛋白偶联受体(GPCRs)定位于初级纤毛,但纤毛对 GPCR 信号的功能意义仍不完全清楚。我们通过关注多巴胺 D1 受体(D1R)和β-2 肾上腺素能受体(B2AR)来研究这个问题,这两种密切相关的儿茶酚胺受体通过刺激可扩散第二信使环磷酸腺苷(cAMP)的产生来信号转导,但在与纤毛的定位上有所不同。D1R 强烈集中在 IMCD3 细胞的纤毛上,如以前在其他纤毛细胞类型中所示,但破坏纤毛不会影响 D1R 的表面表达或介导浓度依赖性 cAMP 反应的能力。通过开发一种适合于分辨内外纤毛 cAMP 变化的 FRET 基生物传感器,我们发现 D1R 介导的 cAMP 反应不仅局限于纤毛,而且扩展到纤毛外的细胞质中。相反,我们在这里显示的 B2AR 有效地排除在纤毛之外,也在纤毛和纤毛外的隔室中产生了 cAMP 反应。我们通过研究孤儿 GPCR GPR88 来确定初级纤毛的独特信号作用,GPR88 与 D1R 在大脑中共同表达,我们在这里显示它与 D1R 相似地靶向纤毛。在有纤毛的细胞中,GPR88 的突变激活强烈降低了 D1R 介导的 cAMP 反应,但不影响 B2AR 介导的反应。相比之下,在非纤毛细胞中,GPR88 分布在整个质膜上,并抑制了 B2AR 反应。这些结果确定了初级纤毛的离散“隔离”功能,通过受体的横向分离对整合儿茶酚胺信号赋予选择性,并表明 GPR88 的细胞活性可能是其对多巴胺依赖行为的影响的基础。

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