Greka A, Lipton S A, Zhang D
Center for Neuroscience and Ageing, The Burnham Institute, 10901 North Torrey Pines Road, La Jolla, California 90237, USA.
Eur J Neurosci. 2000 Oct;12(10):3575-82. doi: 10.1046/j.1460-9568.2000.00247.x.
Retinal gamma-aminobutyric acid type C (GABA(C)) receptors consist of rho subunits. Here we report our results from a competitive PCR and patch-clamp electrophysiology study quantifying rho subunit message and characterizing GABA(C) receptor-mediated currents at different stages of mouse retinal development. Mouse rho1 message is first detected at postnatal day 6 (P6), increases significantly until P9 and remains at this level through adulthood, whereas mouse rho2 message does not appear until P9, peaks at P15 and remains at this level through adulthood. There is an approximate twofold excess of rho1 compared to rho2 message at most stages of development, which persists in adulthood. Functional GABA(C) receptors are detected in acutely dissociated bipolar cells of P9 or older mouse retina. Early in development (P9-10), GABA(C) receptors are composed solely of rho1 subunits, but subsequently contain rho1 and/or rho2 subunits (by P11 and later). These findings are intriguing because the onset and rapid increase in rho subunit transcription and functional expression match the initiation and active period of bipolar cell differentiation in retinal development as well as the stage of eye opening and initial visual experience in the rodent. The investigation of mouse rho subunits here forms a basis for future studies on the role of GABA(C) receptors in retinal development.
视网膜C型γ-氨基丁酸(GABA(C))受体由rho亚基组成。在此,我们报告了一项竞争性PCR和膜片钳电生理学研究的结果,该研究对rho亚基信息进行了定量,并在小鼠视网膜发育的不同阶段对GABA(C)受体介导的电流进行了表征。小鼠rho1信息在出生后第6天(P6)首次被检测到,在P9之前显著增加,并在成年期保持在这一水平,而小鼠rho2信息直到P9才出现,在P15达到峰值,并在成年期保持在这一水平。在大多数发育阶段,rho1信息比rho2信息大约多出两倍,这种情况在成年期持续存在。在P9或更年长的小鼠视网膜急性分离的双极细胞中检测到功能性GABA(C)受体。在发育早期(P9 - 10),GABA(C)受体仅由rho1亚基组成,但随后包含rho1和/或rho2亚基(从P11及以后)。这些发现很有趣,因为rho亚基转录和功能表达的开始和快速增加与视网膜发育中双极细胞分化的起始和活跃期相匹配,也与啮齿动物睁眼和初始视觉体验的阶段相匹配。本文对小鼠rho亚基的研究为未来关于GABA(C)受体在视网膜发育中作用的研究奠定了基础。