Unravelling the structure of the lamellipodium

被引:45
作者
Small, J. V. [1 ]
Auinger, S. [1 ]
Nemethova, M. [1 ]
Koestler, S. [1 ]
Goldie, K. N. [3 ,4 ]
Hoenger, A. [4 ]
Resch, G. P. [1 ,2 ]
机构
[1] Austrian Acad Sci IMBA, Inst Mol Biotechnol, A-1030 Vienna, Austria
[2] IMBA, Elect Microscopy Serv, Res Inst Mol Pathol IMP, A-1030 Vienna, Austria
[3] Univ Melbourne, Mol Sci & Biotechnol Inst Bio21, Melbourne, Vic 3010, Australia
[4] European Mol Biol Lab Heidelberg, D-69117 Heidelberg, Germany
关键词
actin cytoskeleton; Arp2/3; branching electron microscopy; lamellipodium; tomography;
D O I
10.1111/j.1365-2818.2008.02060.x
中图分类号
TH742 [显微镜];
学科分类号
摘要
Pushing at the cell front is the business of lamellipodia and understanding flow lamellipodia function requires knowledge of their structural organization. Analysis of extracted. critical-point-dried cells by electron microscopy has led to a current dogma that the lamellipodium pushes as a branched array of actin filaments. with a branching angle of 70 degrees, defined by the Arp2/3 complex. Comparison of different preparative methods indicates that the critical-point-drying-replica technique introduces distortions into actin networks, such that crossing filaments may appear branched. After negative staining and front preliminary studies by cryo-electron tomography, no clear evidence could be found for actin filament branching in lamellipodia. From recent observations of a sub-class of actin speckles in lamellipodia that exhibit a dynamic behaviour similar to speckles in the lamella region behind. it has been proposed that the lamellipodium surfs on top of the lamella. Negative stain electron microscopy and cryo-electron microscopy of fixed cells, which reveal the entire complement of filaments in lamellipodia show. however, that there is no separate. second array of filaments beneath the lamellipodium network. From present data, we conclude that the lamellipodium is a distinct protrusive entity composed of a network of primarily unbranched actin filaments. Cryoelectron tomography of snap-frozen intact cells will be required to finally clarify the three-dimensional arrangement of actin filaments in lamellipodia in vivo.
引用
收藏
页码:479 / 485
页数:7
相关论文
共 49 条
[1]   LOCOMOTION OF FIBROBLASTS IN CULTURE .4. ELECTRON MICROSCOPY OF LEADING LAMELLA [J].
ABERCROM.M ;
HEAYSMAN, JE ;
PEGRUM, SM .
EXPERIMENTAL CELL RESEARCH, 1971, 67 (02) :359-&
[2]   LOCOMOTION OF FIBROBLASTS IN CULTURE .2. RUFFLING [J].
ABERCROMBIE, M ;
HEAYSMAN, JE ;
PEGRUM, SM .
EXPERIMENTAL CELL RESEARCH, 1970, 60 (03) :437-+
[3]   LOCOMOTION OF FIBROBLASTS IN CULTURE .1. MOVEMENTS OF LEADING EDGE [J].
ABERCROMBIE, M ;
HEAYSMAN, JE ;
PEGRUM, SM .
EXPERIMENTAL CELL RESEARCH, 1970, 59 (03) :393-+
[4]   Direct real-time observation of actin filament branching mediated by Arp2/3 complex using total internal reflection fluorescence microscopy [J].
Amann, KJ ;
Pollard, TD .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2001, 98 (26) :15009-15013
[5]   Ena/VASP proteins have an anti-capping, independent function in filopodia formation [J].
Applewhite, Derek A. ;
Barzik, Melanie ;
Kojima, Shin-ichiro ;
Svitkina, Tatyana M. ;
Gertler, Frank B. ;
Borisy, Gary G. .
MOLECULAR BIOLOGY OF THE CELL, 2007, 18 (07) :2579-2591
[6]  
AUINGER S, 2008, METHODS CEL IN PRESS
[7]   From proteomic inventory to architecture [J].
Baumeister, W .
FEBS LETTERS, 2005, 579 (04) :933-937
[8]   Antagonism between Ena/VASP proteins and actin filament capping regulates fibroblast motility [J].
Bear, JE ;
Svitkina, TM ;
Krause, M ;
Schafer, DA ;
Loureiro, JJ ;
Strasser, GA ;
Maly, IV ;
Chaga, OY ;
Cooper, JA ;
Borisy, GG ;
Gertler, FB .
CELL, 2002, 109 (04) :509-521
[9]   Cascade pathway of filopodia formation downstream of SCAR [J].
Biyasheva, A ;
Svitkina, T ;
Kunda, P ;
Baum, B ;
Borisy, G .
JOURNAL OF CELL SCIENCE, 2004, 117 (06) :837-848