Reconstitution of clathrin-independent endocytosis at the apical domain ofpermeabilized MDCK II cells: Requirement for a Rho-family GTPase

Citation
O. Garred et al., Reconstitution of clathrin-independent endocytosis at the apical domain ofpermeabilized MDCK II cells: Requirement for a Rho-family GTPase, TRAFFIC, 2(1), 2001, pp. 26-36
Citations number
73
Categorie Soggetti
Cell & Developmental Biology
Journal title
TRAFFIC
ISSN journal
13989219 → ACNP
Volume
2
Issue
1
Year of publication
2001
Pages
26 - 36
Database
ISI
SICI code
1398-9219(200101)2:1<26:ROCEAT>2.0.ZU;2-V
Abstract
This paper studies the endocytosis of ricin at the apical pole of polarized MDCK II cells after permeabilization of the cells basolaterally with strep tolysin O. Ricin endocytosis after the addition of cytosol with an ATP-rege nerating system was 2-3-fold higher than after the addition of a transport medium. A similar increase in ricin endocytosis was obtained by reconstitut ion of dialyzed cytosol with the nonhydrolyzable GTP analog, GTP gammaS, in the presence of an ATP-regenerating system. The nonhydrolyzable GDP analog , GDP betaS, did not increase ricin uptake. In contrast to the data obtaine d with ricin, GTP IS was found to inhibit apical transferrin uptake in MDCK II cells transfected with the human transferrin receptor, and the data thu s imply that GTP gammaS supports clathrin-independent endocytosis. Electron microscopy (EM) demonstrated that free endocytic vesicles were formed from the apical pole of permeabilized MDCK II cells in the presence of GTP IS a nd that both a ricin-HRP conjugate, HRP, and cationized gold were endocytos ed. Ricin endocytosis in the presence of intact cytosol, as well as GTP gam maS-stimulated ricin uptake, was inhibited by Clostridium botulinum C3 tran sferase, an enzyme found to inactivate Rho proteins. The data demonstrate t hat apical clathrin-independent endocytosis functions in the presence of GT P gammaS, and suggest that one or more of the small GTP binding proteins of the Rho family is involved in regulation of the epical clathrin-independen t endocytosis in MDCK II cells.