Abstract

Granin-family proteins, including chromogranin A (CgA) and secretogranin III (SgIII), are transported to secretory granules (SGs) in neuroendocrine cells. We previously showed that SgIII binds strongly to CgA in an intragranular milieu and targets CgA to SGs in pituitary and pancreatic endocrine cells. In this study, we demonstrated that with a sucrose density gradient of rat insulinoma-derived INS-1 cell homogenates, SgIII was localized to the SG fraction and was fractionated to the SG membrane (SGM) despite lacking the transmembrane region. With depletion of cholesterol from the SGM using methyl-beta-cyclodextrin, SgIII was impaired to bind to the SGM. Both SgIII and CgA were solubilized from the SGM by Triton X-100 in contrast to the Triton X-100 insolubility of carboxypeptidase E. SgIII and carboxypeptidase E strongly bound to the SGM-type liposome in intragranular conditions, but CgA did not. Instead, CgA bound to the SGM-type liposome only in the presence of SgIII. Immunocytochemical and pulse-chase experiments revealed that SgIII deleting the N-terminal lipid-binding region missorted to the constitutive pathway in mouse corticotroph-derived AtT-20 cells. Thus, we suggest that SgIII directly binds to cholesterol components of the SGM and targets CgA to SGs in pituitary and pancreatic endocrine cells.

Highlights

  • Peptide hormones and granin-family proteins are sorted to immature-budding granules at the trans-Golgi network (TGN)1 in neuroendocrine cells

  • We demonstrated that secretogranin III (SgIII) is localized to the secretory granule (SG) membrane (SGM) fraction together with chromogranin A (CgA) and carboxypeptidase E (CPE) by subcellular fractionation

  • In the absence of SgIII, full-length CgA could not bind to the SGM-type liposome

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Summary

Sorting Mechanism of Secretogranin III

Associated proteins as seen in apical sorting (20, 21) and in endocytosis (22). We focused on the lipid-binding capacity of SgIII as seen in CPE and examined the interaction of SgIII, CgA, and CPE with lipid components of the SGM. We found that SgIII binds to cholesterol-rich microdomains in the SGM, suggesting that SgIII retains CgA to the SGs with this specific lipid binding

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