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Publication : BIG3 inhibits insulin granule biogenesis and insulin secretion.

First Author  Li H Year  2014
Journal  EMBO Rep Volume  15
Issue  6 Pages  714-22
PubMed ID  24711543 Mgi Jnum  J:216529
Mgi Id  MGI:5608951 Doi  10.1002/embr.201338181
Citation  Li H, et al. (2014) BIG3 inhibits insulin granule biogenesis and insulin secretion. EMBO Rep 15(6):714-22
abstractText  While molecular regulation of insulin granule exocytosis is relatively well understood, insulin granule biogenesis and maturation and its influence on glucose homeostasis are relatively unclear. Here, we identify a novel protein highly expressed in insulin-secreting cells and name it BIG3 due to its similarity to BIG/GBF of the Arf-GTP exchange factor (GEF) family. BIG3 is predominantly localized to insulin- and clathrin-positive trans-Golgi network (TGN) compartments. BIG3-deficient insulin-secreting cells display increased insulin content and granule number and elevated insulin secretion upon stimulation. Moreover, BIG3 deficiency results in faster processing of proinsulin to insulin and chromogranin A to beta-granin in beta-cells. BIG3-knockout mice exhibit postprandial hyperinsulinemia, hyperglycemia, impaired glucose tolerance, and insulin resistance. Collectively, these results demonstrate that BIG3 negatively modulates insulin granule biogenesis and insulin secretion and participates in the regulation of systemic glucose homeostasis.
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