Title of article :
Lamellipodial Actin Mechanically Links Myosin Activity with Adhesion-Site Formation
Author/Authors :
Grégory Giannone، نويسنده , , Benjamin J. Dubin-Thaler، نويسنده , , Olivier Rossier، نويسنده , , Yunfei Cai، نويسنده , , Oleg Chaga، نويسنده , , Guoying Jiang، نويسنده , , William Beaver، نويسنده , , Hans-Günther D?bereiner، نويسنده , , Yoav Freund، نويسنده , , Gary Borisy، نويسنده , , Michael P. Sheetz، نويسنده ,
Issue Information :
هفته نامه با شماره پیاپی سال 2007
Pages :
15
From page :
561
To page :
575
Abstract :
Cell motility proceeds by cycles of edge protrusion, adhesion, and retraction. Whether these functions are coordinated by biochemical or biomechanical processes is unknown. We find that myosin II pulls the rear of the lamellipodial actin network, causing upward bending, edge retraction, and initiation of new adhesion sites. The network then separates from the edge and condenses over the myosin. Protrusion resumes as lamellipodial actin regenerates from the front and extends rearward until it reaches newly assembled myosin, initiating the next cycle. Upward bending, observed by evanescence and electron microscopy, results in ruffle formation when adhesion strength is low. Correlative fluorescence and electron microscopy shows that the regenerating lamellipodium forms a cohesive, separable layer of actin above the lamellum. Thus, actin polymerization periodically builds a mechanical link, the lamellipodium, connecting myosin motors with the initiation of adhesion sites, suggesting that the major functions driving motility are coordinated by a biomechanical process.
Journal title :
CELL
Serial Year :
2007
Journal title :
CELL
Record number :
1018531
Link To Document :
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