4.4 Article

A Secretory Golgi Bypass Route to the Apical Surface Domain of Epithelial MDCK Cells

期刊

TRAFFIC
卷 10, 期 11, 页码 1685-1695

出版社

WILEY
DOI: 10.1111/j.1600-0854.2009.00984.x

关键词

apical; basolateral; cholesterol depletion; epithelial cells; glycoproteins; Golgi bypass route; intracellular transport; MDCK; proteoglycans; the Golgi apparatus

资金

  1. Norwegian Research Council [174796, 174548, 183613]

向作者/读者索取更多资源

Proteins leave the endoplasmic reticulum (ER) for the plasma membrane via the classical secretory pathway, but routes bypassing the Golgi apparatus have also been observed. Apical and basolateral protein secretion in epithelial Madin-Darby canine kidney (MDCK) cells display differential sensitivity to Brefeldin A (BFA), where low concentrations retard apical transport, while basolateral transport still proceeds through intact Golgi cisternae. We now describe that BFA-mediated retardation of glycoprotein and proteoglycan transport through the Golgi apparatus induces surface transport of molecules lacking Golgi modifications, possessing those acquired in the ER. Low concentrations of BFA induces apical Golgi bypass, while higher concentrations were required to induce basolateral Golgi bypass. Addition of the KDEL ER-retrieval sequence to model protein cores allowed observation of apical Golgi bypass in untreated MDCK cells. Basolateral Golgi bypass was only observed after the addition of BFA or upon cholesterol depletion. Thus, in MDCK cells, an apical Golgi bypass route can transport cargo from pre-Golgi organelles in untreated cells, while the basolateral bypass route is inducible.

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