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钠/钙交换蛋白CalX的光激活、适应性及细胞存活功能

Light activation, adaptation, and cell survival functions of the Na+/Ca2+ exchanger CalX.

作者信息

Wang Tao, Xu Hong, Oberwinkler Johannes, Gu Yuchun, Hardie Roger C, Montell Craig

机构信息

Department of Biological Chemistry, The Johns Hopkins University School of Medicine, Baltimore, MD 21205, USA.

出版信息

Neuron. 2005 Feb 3;45(3):367-78. doi: 10.1016/j.neuron.2004.12.046.

Abstract

In sensory neurons, Ca(2+) entry is crucial for both activation and subsequent attenuation of signaling. Influx of Ca(2+) is counterbalanced by Ca(2+) extrusion, and Na(+)/Ca(2+) exchange is the primary mode for rapid Ca(2+) removal during and after sensory stimulation. However, the consequences on sensory signaling resulting from mutations in Na(+)/Ca(2+) exchangers have not been described. Here, we report that mutations in the Drosophila Na(+)/Ca(2+) exchanger calx have a profound effect on activity-dependent survival of photoreceptor cells. Loss of CalX activity resulted in a transient response to light, a dramatic decrease in signal amplification, and unusually rapid adaptation. Conversely, overexpression of CalX had reciprocal effects and greatly suppressed the retinal degeneration caused by constitutive activity of the TRP channel. These results illustrate the critical role of Ca(2+) for proper signaling and provide genetic evidence that Ca(2+) overload is responsible for a form of retinal degeneration resulting from defects in the TRP channel.

摘要

在感觉神经元中,钙离子内流对于信号传导的激活及随后的衰减都至关重要。钙离子的内流通过钙离子外流得以平衡,而钠/钙交换是感觉刺激期间及之后快速移除钙离子的主要方式。然而,钠/钙交换体突变对感觉信号传导的影响尚未见报道。在此,我们报告果蝇钠/钙交换体Calx的突变对光感受器细胞的活性依赖性存活有深远影响。CalX活性丧失导致对光的短暂反应、信号放大显著降低以及异常快速的适应性。相反,CalX的过表达则产生相反的效果,并极大地抑制了由TRP通道组成性活性引起的视网膜变性。这些结果说明了钙离子对于正常信号传导的关键作用,并提供了遗传学证据,表明钙离子过载是由TRP通道缺陷导致的一种视网膜变性的原因。

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