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| Title: | Accessory subunit Ac45 controls the V-ATPase in the regulated secretory pathway. |
| Author(s): | Jansen, E.J.S. (314280197) Scheenen, W.J.J.M. (138281556) Hafmans, T.G.M. (298975327) Martens, G.J.M. (068766823) |
| Publication year: | 2008 |
| Document type: | Article / Letter to editor |
| Journal: | Biochimica et Biophysica Acta-Molecular Cell Research |
| ISSN: | 0167-4889 |
| Volume: | vol. 1783 |
| Issue: | iss. 12 |
| Start page: | p. 2301 |
| End page: | p. 2310 |
| Abstract: | The vacuolar (H(+))-ATPase (V-ATPase) is crucial for multiple processes within the eukaryotic cell, including membrane transport and neurotransmitter secretion. How the V-ATPase is regulated, e.g. by an accessory subunit, remains elusive. Here we explored the role of the neuroendocrine V-ATPase accessory subunit Ac45 via its transgenic expression specifically in the Xenopus intermediate pituitary melanotrope cell model. The Ac45-transgene product did not affect the levels of the prohormone proopiomelanocortin nor of V-ATPase subunits, but rather caused an accumulation of the V-ATPase at the plasma membrane. Furthermore, a higher abundance of secretory granules, protrusions of the plasma membrane and an increased Ca(2+)-dependent secretion efficiency were observed in the Ac45-transgenic cells. We conclude that in neuroendocrine cells Ac45 guides the V-ATPase through the secretory pathway, thereby regulating the V-ATPase-mediated process of Ca(2+)-dependent peptide secretion. |
| Subject: | Cellular Animal Physiology Molecular Animal Physiology NCMLS 1: Immunity, infection and tissue repair UMCN 4.1: Microbial pathogenesis and host defense |
| Organization: | IQ Healthcare Biochemistry (UMCN) Molecular Animal Physiology Cellular Animal Physiology |
| Organization (former): | Centre for Quality of Care Research
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| Appears in Collections: | Academic bibliography
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Please use this identifier to cite or link to this item:
http://hdl.handle.net/2066/69497
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