Munc18b is a major mediator of insulin exocytosis in rat pancreatic [beta]-cells

Secl/Munc18 proteins facilitate the formation of trans-SNARE (soluble N-ethylmaleimide-sensitive factor attachment protein receptor) complexes that mediate fusion of secretory granule (SG) with plasma membrane (PM). The capacity of pancreatic [beta]-cells to exocytose insulin becomes compromised in...

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Veröffentlicht in:Diabetes (New York, N.Y.) N.Y.), 2013-07, Vol.62 (7), p.2416
Hauptverfasser: Lain, Patrick P.L, Ohno, Mitsuyo, Dolai, Subhankar, He, Yu, Qin, Tairan, Liang, Tao, Zhu, Dan, Kang, Youhou, Liu, Yunfeng, Kauppi, Maria, Xie, Li, Wan, Wilson C.Y, Bin, Na-Rhum, Sugita, Shuzo, Olkkonen, Vesa M, Takahashi, Noriko, Kasai, Haruo, Gaisano, Herbert Y
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Sprache:eng
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Zusammenfassung:Secl/Munc18 proteins facilitate the formation of trans-SNARE (soluble N-ethylmaleimide-sensitive factor attachment protein receptor) complexes that mediate fusion of secretory granule (SG) with plasma membrane (PM). The capacity of pancreatic [beta]-cells to exocytose insulin becomes compromised in diabetes. [beta]-Cells express three Munc18 isoforms of which the role of Munc18b is unknown. We found that Munc18b depletion in rat islets disabled SNARE complex formation formed by syntaxin (Syn)-2 and Syn-3. Two-photon imaging analysis revealed in Munc18b-depleted [beta]-cells a 40% reduction in primary exocytosis (SG-PM fusion) and abrogation of almost all sequential SG-SG fusion, together accounting for a 50% reduction in glucose-stimulated insulin secretion (GSIS). In contrast, gain-of-function expression of Munc18b wild-type and, more so, dominant-positive K314L/R315L mutant promoted the assembly of cognate SNARE complexes, which caused potentiation of biphasic GSIS. We found that this was attributed to a more than threefold enhancement of both primary exocytosis and sequential SG-SG fusion, including long-chain fusion (6-8 SGs) not normally (2-3 SG fusion) observed. Thus, Munc18b-mediated exocytosis may be deployed to increase secretory efficiency of SGs in deeper cytosolic layers of [beta]-cells as well as additional primary exocytosis, which may open new avenues of therapy development for diabetes.
ISSN:0012-1797
1939-327X
DOI:10.2337/db12-1380