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ANOs 3–7 in the anoctamin/Tmem16 Cl− channel family are intracellular proteins

机译:octamin / Tmem16 Cl-通道家族中的ANO 3-7是细胞内蛋白

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摘要

Ca2+-activated Cl channels (CaCCs) participate in numerous physiological functions such as neuronal excitability, sensory transduction, and transepithelial fluid transport. Recently, it was shown that heterologously expressed anoctamins ANO1 and ANO2 generate currents that resemble native CaCCs. The anoctamin family (also called Tmem16) consists of 10 members, but it is not known whether all members of the family are CaCCs. Expression of ANOs 3–7 in HEK293 cells did not generate Cl currents activated by intracellular Ca2+, as determined by whole cell patch clamp electrophysiology. With the use of confocal imaging, only ANO1 and ANO2 traffic to the plasma membrane when expressed heterologously. Furthermore, endogenously expressed ANO7 in the human prostate is predominantly intracellular. We took a chimeric approach to identify regions critical for channel trafficking and function. However, none of the chimeras of ANO1 and ANO5/7 that we made trafficked to the plasma membrane. Our results suggest that intracellular anoctamins may be endoplasmic reticulum proteins, although it remains unknown whether these family members are CaCCs. Determining the role of anoctamin family members in ion transport will be critical to understanding their functions in physiology and disease.
机译:Ca 2 + 激活的Cl -通道(CaCC)参与许多生理功能,例如神经元兴奋性,感觉传导和跨上皮液运输。最近,表明异源表达的八环素ANO1和ANO2产生类似于天然CaCC的电流。八环素家族(也称为Tmem16)由10个成员组成,但是尚不清楚该家族的所有成员是否均为CaCC。通过全细胞膜片钳电生理学测定,HEK293细胞中ANO 3-7的表达未产生被细胞内Ca 2 + 激活的Cl -电流。通过共聚焦成像,异种表达时只有ANO1和ANO2进入质膜。此外,在人前列腺中内源表达的ANO7主要在细胞内。我们采用了一种嵌合方法来识别对渠道贩运和功能至关重要的区域。但是,我们制造的ANO1和ANO5 / 7嵌合体均未转运至质膜。我们的结果表明,细胞内的八环素可能是内质网蛋白,尽管这些家族成员是否为CaCC尚不清楚。确定八蛋胺家族成员在离子迁移中的作用对于理解其在生理和疾病中的功能至关重要。

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