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      Detection of insulin granule exocytosis by an electrophysiology method with high temporal resolution reveals enlarged insulin granule pool in BIG3-knockout mice.

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          Abstract

          We recently identified BIG3 as a negative regulator of insulin granule biogenesis and reported increased insulin secretion in BIG3-knockout (BKO) mice. To pinpoint the site of action for BIG3, we investigated whether BIG3 regulates quantal insulin granule exocytosis. We established an assay to detect insulin granule exocytosis by recording ATP-elicited currents at high temporal resolution by patch clamp. Similarly to insulin, ATP release was increased in BKO β-cells. Although the frequency of insulin granule exocytosis was increased in BKO β-cells, quantal size or release kinetics remained unchanged. Electron microscopy studies showed that the number of insulin granules was increased by >60% in BKO β-cells. However, the number of morphologically docked granules was unaltered. The number of insulin granules having significant distances away from plasma membrane was greatly increased in BKO β-cells. Thus, BIG3 negatively regulates insulin granule exocytosis by restricting insulin granule biogenesis without the release kinetics of individual granules at the final exocytotic steps being affected. Depletion of BIG3 leads to an enlarged releasable pool of insulin granules, which accounts for increased release frequency and consequently increased insulin secretion.

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          Author and article information

          Journal
          Am. J. Physiol. Endocrinol. Metab.
          American journal of physiology. Endocrinology and metabolism
          American Physiological Society
          1522-1555
          0193-1849
          Oct 01 2014
          : 307
          : 7
          Affiliations
          [1 ] Singapore Bioimaging Consortium.
          [2 ] Singapore Bioimaging Consortium, Institute of Molecular and Cell Biology, and.
          [3 ] Institute of Molecular and Cell Biology, and Joint IMB-IMCB Electron Microscopy Suite, Agency for Science, Technology and Research (A*STAR), Singapore;
          [4 ] Institute of Molecular Medicine, Peking University, Peking, China; and.
          [5 ] State Key Laboratory of Pharmaceutical Biotechnology, Department of Medicine, and Pharmacology and Pharmacy, The University of Hong Kong, Hong Kong, China.
          [6 ] Institute of Molecular and Cell Biology, and.
          [7 ] Singapore Bioimaging Consortium, weiping_han@sbic.a-star.edu.sg.
          Article
          ajpendo.00208.2014
          10.1152/ajpendo.00208.2014
          25139048
          99d43613-689f-4f49-a789-813650363079
          History

          Ca2+,brefeldin A-inhibited guanine nucleotide exchange protein 3,diabetes,exocytosis,fusion,insulin

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