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Molecular cloning and functional expression of zfCx52.6: A novel connexin with hemichannel-forming properties expressed in horizontal cells of the zebrafish retina

机译:zfCx52.6的分子克隆和功能表达:一种在斑马鱼视网膜水平细胞中表达的具有半通道形成特性的新型连接蛋白

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摘要

Gap junction-mediated electrical coupling contributes to synchronous oscillatory activities of neurons, and considerable progress has been made in defining the molecular composition of gap junction channels. In particular, cloning and functional expression of gap junction proteins (connexins (Cx)) from zebrafish retina have shown that this part of the brain possesses a high degree of connexin diversity that may account for differential functional properties of electrical synapses. Here, we report the cloning and functional characterization of a new connexin, designated zebrafish Cx52.6 (zfCx52.6). This connexin shows little similarity to known connexins from fish and higher vertebrates. By combining in situ hybridization with Laser Capture Microdissection and RT-PCR, we found that this novel fish connexin is expressed in horizontal cells in the inner nuclear layer of the retina. Functional expression of zfCx52.6 in neuroblastoma cells and Xenopus oocytes led to functional gap junctional channels and, in single oocytes, induced large non-junctional membrane currents indicative of the formation of hemichannels, which were inhibited in reversible fashion by raising extracellular Ca 2+ concentrations.
机译:间隙连接介导的电耦合有助于神经元的同步振荡活动,并且在定义间隙连接通道的分子组成方面取得了相当大的进步。特别是,来自斑马鱼视网膜的间隙连接蛋白(连接蛋白(Cx))的克隆和功能表达表明,大脑的这一部分具有高度的连接蛋白多样性,这可能解释了电突触的不同功能特性。在这里,我们报告了一种新的连接蛋白,称为斑马鱼Cx52.6(zfCx52.6)的克隆和功能表征。这种连接蛋白与鱼类和高等脊椎动物的已知连接蛋白几乎没有相似之处。通过结合原位杂交与激光捕获显微切割和RT-PCR,我们发现这种新型的鱼连接蛋白在视网膜内核层的水平细胞中表达。 zfCx52.6在神经母细胞瘤细胞和非洲爪蟾卵母细胞中的功能表达导致功能性间隙连接通道,并且在单个卵母细胞中诱导了指示非通道形成的大非结膜电流,该电流可通过升高细胞外Ca 2+以可逆方式抑制。浓度。

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