Cytoplasmic Cl<sup>-</sup> couples membrane remodeling to epithelial morphogenesis.
basic_science · Level V
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- Record sourced from PubMed, PMID 29229864.
- Also identified by DOI 10.1073/pnas.1714448115 and PMC identifier 5748203.
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Abstract
Chloride is the major free anion in the extracellular space (>100 mM) and within the cytoplasm in eukaryotes (10 ∼ 20 mM). Cytoplasmic Cl<sup>-</sup> level is dynamically regulated by Cl<sup>-</sup> channels and transporters. It is well established that movement of Cl<sup>-</sup> across the cell membrane is coupled with cell excitability through changes in membrane potential and with water secretion. However, whether cytoplasmic Cl<sup>-</sup> plays additional roles in animal development and tissue homeostasis is unknown. Here we use genetics, cell biological and pharmacological tools to demonstrate that TMEM16A, an evolutionarily conserved calcium-activated chloride channel (CaCC), regulates cytoplasmic Cl<sup>-</sup> homeostasis and promotes plasma membrane remodeling required for mammalian epithelial morphogenesis. We demonstrate that TMEM16A-mediated control of cytoplasmic Cl<sup>-</sup> regulates the organization of the major phosphoinositide species PtdIns(4,5)P<sub>2</sub> into microdomains on the plasma membrane, analogous to processes that cluster soluble and membrane proteins into phase-separated droplets. We further show that an adequate cytoplasmic Cl<sup>-</sup> level is required for proper endocytic trafficking and membrane supply during early stages of ciliogenesis and adherens junction remodeling. Our study thus uncovers a critical function of CaCC-mediated cytoplasmic Cl<sup>-</sup> homeostasis in controlling the organization of PtdIns(4,5)P<sub>2</sub> microdomains and membrane remodeling. This newly defined role of cytoplasmic Cl<sup>-</sup> may shed light on the mechanisms of intracellular Cl<sup>-</sup> signaling events crucial for regulating tissue architecture and organelle biogenesis during animal development.
Medical subject headings
- Anoctamin-1
- Cell Membrane
- Chlorides
- Morphogenesis
- Phosphatidylinositol 4,5-Diphosphate