Stöhr Heidi, Heisig Julia B, Benz Peter M, Schöberl Simon, Milenkovic Vladimir M, Strauss Olaf, Aartsen Wendy M, Wijnholds Jan, Weber Bernhard H F, Schulz Heidi L
Institut für Humangenetik, Universität Regensburg, 93053 Regensburg, Germany.
J Neurosci. 2009 May 27;29(21):6809-18. doi: 10.1523/JNEUROSCI.5546-08.2009.
Photoreceptor ribbon synapses release glutamate in response to graded changes in membrane potential evoked by vast, logarithmically scalable light intensities. Neurotransmitter release is modulated by intracellular calcium levels. Large Ca(2+)-dependent chloride currents are important regulators of synaptic transmission from photoreceptors to second-order neurons; the molecular basis underlying these currents is unclear. We cloned human and mouse TMEM16B, a member of the TMEM16 family of transmembrane proteins, and show that it is abundantly present in the photoreceptor synaptic terminals in mouse retina. TMEM16B colocalizes with adaptor proteins PSD95, VELI3, and MPP4 at the ribbon synapses and contains a consensus PDZ class I binding motif capable of interacting with PDZ domains of PSD95. Furthermore, TMEM16B is lost from photoreceptor membranes of MPP4-deficient mice. This suggests that TMEM16B is a novel component of a presynaptic protein complex recruited to specialized plasma membrane domains of photoreceptors. TMEM16B confers Ca(2+)-dependent chloride currents when overexpressed in mammalian cells as measured by halide sensitive fluorescent protein assays and whole-cell patch-clamp recordings. The compartmentalized localization and the electrophysiological properties suggest TMEM16B to be a strong candidate for the long sought-after Ca(2+)-dependent chloride channel in the photoreceptor synapse.
光感受器带状突触会根据由大范围、对数可扩展光强度引发的膜电位分级变化释放谷氨酸。神经递质的释放受细胞内钙水平的调节。大的钙依赖性氯电流是从光感受器到二级神经元突触传递的重要调节因子;这些电流的分子基础尚不清楚。我们克隆了跨膜蛋白TMEM16家族成员人类和小鼠的TMEM16B,并表明它大量存在于小鼠视网膜的光感受器突触终末。TMEM16B在带状突触处与衔接蛋白PSD95、VELI3和MPP4共定位,并且包含一个能够与PSD95的PDZ结构域相互作用的共有I类PDZ结合基序。此外,TMEM16B在MPP4缺陷小鼠的光感受器膜上缺失。这表明TMEM16B是被招募到光感受器特殊质膜结构域的突触前蛋白复合物的一个新组分。通过卤化物敏感荧光蛋白测定法和全细胞膜片钳记录测量,当在哺乳动物细胞中过表达时,TMEM16B赋予钙依赖性氯电流。其分区定位和电生理特性表明TMEM16B是光感受器突触中长期寻找的钙依赖性氯通道的有力候选者。