Cytosol-derived proteins are sufficient for Arp2/3 recruitment and ARF/coatomer-dependent actin polymerization on Golgi membranes

被引:49
作者
Chen, JL
Lacomis, L
Erdjument-Bromage, H
Tempst, P
Stamnes, M [1 ]
机构
[1] Univ Iowa, Dept Physiol & Biophys, Roy J & Lucille A Carver Coll Med, Iowa City, IA 52242 USA
[2] Mem Sloan Kettering Canc Ctr, Program Mol Biol, New York, NY 10021 USA
关键词
Golgi apparatus; cytoskeleton; Cdc42; coatomer; ADP-ribosylation factor; Arp2/3;
D O I
10.1016/j.febslet.2004.04.061
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The actin cytoskeleton has been implicated in protein trafficking at the Golgi apparatus and in Golgi orientation and morphology. Actin dynamics at the Golgi are regulated in part by recruiting Cdc42 or Rac to the membrane through a binding interaction with the coatomer-coated (COPI)-vesicle coat protein, coatomer. This leads to actin polymerization through the effector, N-WASP and the Arp2/3 complex. Here, we have used reconstitution of vesicle budding to test whether Arp2/3 is recruited to membranes during the formation of COPI vesicles. Our results revealed that ARF1 activation leads to greatly increased Arp3 levels on the membranes. Coatomer-bound Cdc42 and pre-existing F-actin are important for Arp2/3 binding. ARF1-dependent Arp2/3 recruitment and actin polymerization can be reconstituted on liposomal membranes, indicating that no membrane proteins are necessary. These results show that activated ARF1 can stimulate Arp2/3 recruitment to Golgi membranes through coatomer, Cdc42 or Rac, and N-WASP. (C) 2004 Published by Elsevier B.V. on behalf of the Federation of European Biochemical Societies.
引用
收藏
页码:281 / 286
页数:6
相关论文
共 35 条
[1]   Coupling of coat assembly and vesicle budding to packaging of putative cargo receptors [J].
Bremser, M ;
Nickel, W ;
Schweikert, M ;
Ravazzola, M ;
Amherdt, M ;
Hughes, CA ;
Söllner, TH ;
Rothman, JE ;
Wieland, FT .
CELL, 1999, 96 (04) :495-506
[2]  
COOK RK, 1992, J BIOL CHEM, V267, P9430
[3]   Myosin motors and not actin comets are mediators of the actin-based Golgi-to-endoplasmic reticulum protein transport [J].
Durán, JM ;
Valderrama, F ;
Castel, S ;
Magdalena, J ;
Tomás, M ;
Hosoya, H ;
Renau-Piqueras, J ;
Malhotra, V ;
Egea, G .
MOLECULAR BIOLOGY OF THE CELL, 2003, 14 (02) :445-459
[4]   PROTEIN N-MYRISTOYLATION IN ESCHERICHIA-COLI - RECONSTITUTION OF A EUKARYOTIC PROTEIN MODIFICATION IN BACTERIA [J].
DURONIO, RJ ;
JACKSONMACHELSKI, E ;
HEUCKEROTH, RO ;
OLINS, PO ;
DEVINE, CS ;
YONEMOTO, W ;
SLICE, LW ;
TAYLOR, SS ;
GORDON, JI .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1990, 87 (04) :1506-1510
[5]   Examination of micro-tip reversed-phase liquid chromatographic extraction of peptide pools for mass spectrometric analysis [J].
Erdjument-Bromage, H ;
Lui, M ;
Lacomis, L ;
Grewal, A ;
Annan, RS ;
McNulty, DE ;
Carr, SA ;
Tempst, P .
JOURNAL OF CHROMATOGRAPHY A, 1998, 826 (02) :167-181
[6]   Mammalian Cdc42 is a brefeldin A-sensitive component of the Golgi apparatus [J].
Erickson, JW ;
Zhang, CJ ;
Kahn, RA ;
Evans, T ;
Cerione, RA .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1996, 271 (43) :26850-26854
[7]   Molecular motors and a spectrin matrix associate with Golgi membranes in vitro [J].
Fath, KR ;
Trimbur, GM ;
Burgess, DR .
JOURNAL OF CELL BIOLOGY, 1997, 139 (05) :1169-1181
[8]   Golgi vesicle proteins are linked to the assembly of an actin complex defined by mAbp1 [J].
Fucini, RV ;
Chen, JL ;
Sharma, C ;
Kessels, MM ;
Stamnes, M .
MOLECULAR BIOLOGY OF THE CELL, 2002, 13 (02) :621-631
[9]   Activated ADP-ribosylation factor assembles distinct pools of actin on Gel membranes [J].
Fucini, RV ;
Navarrete, A ;
Vadakkan, C ;
Lacomis, L ;
Erdjument-Bromage, H ;
Tempst, P ;
Stamnes, M .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2000, 275 (25) :18824-18829
[10]   ADP ribosylation factor regulates spectrin binding to the Golgi complex [J].
Godi, A ;
Santone, I ;
Pertile, P ;
Devarajan, P ;
Stabach, PR ;
Morrow, JS ;
Di Tullio, G ;
Polishchuk, R ;
Petrucci, TC ;
Luini, A ;
De Matteis, MA .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1998, 95 (15) :8607-8612