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Chromogranin B (CHGB) is dimorphic and responsible for dominant anion channels delivered to cell surface via regulated secretion

  • Gaya P. Yadav
  • , Haiyuan Wang
  • , Joke Ouwendijk
  • , Stephen Cross
  • , Qiaochu Wang
  • , Feng Qin
  • , Paul Verkade
  • , Michael X. Zhu
  • , Qiu Xing Jiang
  • University of Florida
  • SUNY Buffalo
  • Hauptman-Woodward Medical Research Institute, Inc.
  • Texas A&M University
  • China Medical University
  • Capital Medical University
  • University of Texas Health Science Center at Houston
  • University of Bristol

Research output: Contribution to journalArticlepeer-review

11 Scopus citations

Abstract

Regulated secretion is conserved in all eukaryotes. In vertebrates granin family proteins function in all key steps of regulated secretion. Phase separation and amyloid-based storage of proteins and small molecules in secretory granules require ion homeostasis to maintain their steady states, and thus need ion conductances in granule membranes. But granular ion channels are still elusive. Here we show that granule exocytosis in neuroendocrine cells delivers to cell surface dominant anion channels, to which chromogranin B (CHGB) is critical. Biochemical fractionation shows that native CHGB distributes nearly equally in soluble and membrane-bound forms, and both reconstitute highly selective anion channels in membrane. Confocal imaging resolves granular membrane components including proton pumps and CHGB in puncta on the cell surface after stimulated exocytosis. High pressure freezing immuno-EM reveals a major fraction of CHGB at granule membranes in rat pancreatic β-cells. A cryo-EM structure of bCHGB dimer of a nominal 3.5 Å resolution delineates a central pore with end openings, physically sufficient for membrane-spanning and large single channel conductance. Together our data support that CHGB-containing (CHGB+) channels are characteristic of regulated secretion, and function in granule ion homeostasis near the plasma membrane or possibly in other intracellular processes.

Original languageEnglish
Article number1205516
JournalFrontiers in Molecular Neuroscience
Volume16
DOIs
StatePublished - 2023

Keywords

  • cell surface anion channels
  • cryo-EM structures
  • dimorphic CHGB
  • regulated secretory pathways
  • secretory granule exocytosis

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