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      The Ca2+-activated Cl- channel Ano1 controls microvilli length and membrane surface area in the oocyte.

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          Abstract

          Ca(2+)-activated Cl(-) channels (CaCCs) play important physiological functions in epithelia and other tissues. In frog oocytes the CaCC Ano1 regulates resting membrane potential and the block to polyspermy. Here, we show that Ano1 expression increases the oocyte surface, revealing a novel function for Ano1 in regulating cell morphology. Confocal imaging shows that Ano1 increases microvilli length, which requires ERM-protein-dependent linkage to the cytoskeleton. A dominant-negative form of the ERM protein moesin precludes the Ano1-dependent increase in membrane area. Furthermore, both full-length and the truncated dominant-negative forms of moesin co-localize with Ano1 to the microvilli, and the two proteins co-immunoprecipitate. The Ano1-moesin interaction limits Ano1 lateral membrane mobility and contributes to microvilli scaffolding, therefore stabilizing larger membrane structures. Collectively, these results reveal a newly identified role for Ano1 in shaping the plasma membrane during oogenesis, with broad implications for the regulation of microvilli in epithelia.

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          Author and article information

          Journal
          J. Cell. Sci.
          Journal of cell science
          The Company of Biologists
          1477-9137
          0021-9533
          July 01 2016
          : 129
          : 13
          Affiliations
          [1 ] Department of Physiology and Biophysics, Weill Cornell Medical College in Qatar, Education City - Qatar Foundation, Luqta Street, PO Box 24144, Doha 24144, Qatar.
          [2 ] Department of Physiology and Biophysics, Weill Cornell Medical College in Qatar, Education City - Qatar Foundation, Luqta Street, PO Box 24144, Doha 24144, Qatar Khm2002@qatar-med.cornell.edu.
          Article
          jcs.188367
          10.1242/jcs.188367
          27173493
          7fdfbcda-06da-48f4-b98a-946666359f76
          History

          ERM,Ano1,Microvilli,Moesin,Xenopus oocyte
          ERM, Ano1, Microvilli, Moesin, Xenopus oocyte

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