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首页> 外文期刊>BMC Neuroscience >A CLCA regulatory protein present in the chemosensory cilia of olfactory sensory neurons induces a Ca 2+ -activated Cl ? current when transfected into HEK293
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A CLCA regulatory protein present in the chemosensory cilia of olfactory sensory neurons induces a Ca 2+ -activated Cl ? current when transfected into HEK293

机译:嗅觉感觉神经元的化学感觉纤毛中存在的CLCA调节蛋白可诱导Ca 2+激活的Cl?转染HEK293时的电流

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Background CLCA is a family of metalloproteases that regulate Ca2+-activated Cl? fluxes in epithelial tissues. In HEK293 cells, CLCA1 promotes membrane expression of an endogenous Anoctamin 1 (ANO1, also termed TMEM16A)-dependent Ca2+-activated Cl? current. Motif architecture similarity with CLCA2, 3 and 4 suggested that they have similar functions. We previously detected the isoform CLCA4L in rat olfactory sensory neurons, where Anoctamin 2 is the principal chemotransduction Ca2+-activated Cl? channel. We explored the possibility that this protein plays a role in odor transduction. Results We cloned and expressed CLCA4L from rat olfactory epithelium in HEK293 cells. In the transfected HEK293 cells we measured a Cl?-selective Ca2+-activated current, blocked by niflumic acid, not present in the non-transfected cells. Thus, CLCA4L mimics the CLCA1 current on its ability to induce the ANO1-dependent Ca2+-activated Cl? current endogenous to these cells. By immunocytochemistry, a CLCA protein, presumably CLCA4L, was detected in the cilia of olfactory sensory neurons co-expressing with ANO2. Conclusion These findings suggests that a CLCA isoform, namely CLCA4L, expressed in OSN cilia, might have a regulatory function over the ANO2-dependent Ca2+-activated Cl? channel involved in odor transduction.
机译:背景技术CLCA是一类金属蛋白酶,可调节上皮组织中Ca 2 + 活化的Cl ?通量。在HEK293细胞中,CLCA1促进内源性Anoctamin 1(ANO1,也称为TMEM16A)依赖性Ca 2 + 激活的Cl ?电流的膜表达。 Motif架构与CLCA2、3和4的相似之处表明它们具有相似的功能。我们先前在大鼠嗅觉感觉神经元中检测到同种型CLCA4L,其中Anoctamin 2是主要的化学转导Ca 2 + 激活的Cl ?通道。我们探索了这种蛋白质在气味传导中起作用的可能性。结果我们在HEK293细胞中从大鼠嗅上皮中克隆并表达了CLCA4L。在转染的HEK293细胞中,我们测量了Cl ?-选择性Ca 2 + 激活的电流,该电流被未转染细胞中不存在的尼古拉酸阻断。因此,CLCA4L模仿CLCA1电流诱导这些细胞内源性依赖ANO1的Ca 2 + 激活的Cl ?电流的能力。通过免疫细胞化学,在与ANO2共表达的嗅觉感觉神经元的纤毛中检测到CLCA蛋白,大概是CLCA4L。结论这些发现表明,在OSN纤毛中表达的CLCA亚型,即CLCA4L,可能对涉及ANO2的Ca 2 + 激活的Cl ?通道具有调节功能。在气味转换中。

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