The voltage dependence of the TMEM16B/anoctamin2 calcium-activated chloride channel is modified by mutations in the first putative intracellular loop.

The Journal of General Physiology Pub Date : 2012-04-01 Epub Date: 2012-03-12 DOI:10.1085/jgp.201110764
Valentina Cenedese, Giulia Betto, Fulvio Celsi, O Lijo Cherian, Simone Pifferi, Anna Menini
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引用次数: 30

Abstract

Ca(2+)-activated Cl(-) channels (CaCCs) are involved in several physiological processes. Recently, TMEM16A/anoctamin1 and TMEM16B/anoctamin2 have been shown to function as CaCCs, but very little information is available on the structure-function relations of these channels. TMEM16B is expressed in the cilia of olfactory sensory neurons, in microvilli of vomeronasal sensory neurons, and in the synaptic terminals of retinal photoreceptors. Here, we have performed the first site-directed mutagenesis study on TMEM16B to understand the molecular mechanisms of voltage and Ca(2+) dependence. We have mutated amino acids in the first putative intracellular loop and measured the properties of the wild-type and mutant TMEM16B channels expressed in HEK 293T cells using the whole cell voltage-clamp technique in the presence of various intracellular Ca(2+) concentrations. We mutated E367 into glutamine or deleted the five consecutive glutamates (386)EEEEE(390) and (399)EYE(401). The EYE deletion did not significantly modify the apparent Ca(2+) dependence nor the voltage dependence of channel activation. E367Q and deletion of the five glutamates did not greatly affect the apparent Ca(2+) affinity but modified the voltage dependence, shifting the conductance-voltage relations toward more positive voltages. These findings indicate that glutamates E367 and (386)EEEEE(390) in the first intracellular putative loop play an important role in the voltage dependence of TMEM16B, thus providing an initial structure-function study for this channel.

Abstract Image

Abstract Image

Abstract Image

TMEM16B/anoctamin2钙激活的氯离子通道的电压依赖性被第一个假定的细胞内环的突变所改变。
Ca(2+)激活的Cl(-)通道(CaCCs)参与了许多生理过程。最近,TMEM16A/anoctamin1和TMEM16B/anoctamin2已被证明具有CaCCs的功能,但关于这些通道的结构-功能关系的信息很少。TMEM16B表达于嗅觉感觉神经元的纤毛、颏鼻感觉神经元的微绒毛和视网膜光感受器的突触末梢。在这里,我们对TMEM16B进行了第一次定点诱变研究,以了解电压和Ca(2+)依赖性的分子机制。我们在第一个假定的细胞内环中突变了氨基酸,并使用全细胞电压钳技术测量了在不同细胞内Ca(2+)浓度存在下HEK 293T细胞中表达的野生型和突变型TMEM16B通道的特性。我们将E367突变为谷氨酰胺或删除了5个连续的谷氨酸(386)eeee(390)和(399)EYE(401)。EYE的缺失并没有显著改变通道激活的Ca(2+)依赖性和电压依赖性。E367Q和5个谷氨酸的缺失对Ca(2+)的表观亲和性没有太大影响,但改变了电压依赖性,将电导-电压关系转向更正的电压。这些发现表明,第一个胞内推定环路中的谷氨酸E367和(386)EEEEE(390)在TMEM16B的电压依赖性中起重要作用,从而为该通道的初步结构-功能研究提供了基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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