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Lamellae lead the way [复制链接]

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楼主
发表于 2009-3-6 08:53 |只看该作者 |倒序浏览 |打印
Open any cell biology text and it is clear that lamellipodia, the ruffled edges of motile cells, initiate movement. So it may come as a surprise that Gupton et al. can disrupt this domain without blocking cell movement (page 619). In fact, cells move faster without lamellipodia. The driving force for movement appears to come from the lamella, the structure that lies just proximal to the lamellipodium.
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6 \. ]. N' |9 u5 B# {Previously, the team examined the lamella and lamellipodia using quantitative fluorescent speckle microscopy (qFSM), a technique that allows for deconvolution of images of physically overlapping cell domains. The domains have distinct molecular components, filament–assembly kinetics, and motion. Moreover, although the lamellipodia moved forward and backward repeatedly in the axis of cell movement, the team saw hints that cells made forward progress only when the lamella moved forward.
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To find out if lamellipodia are required for movement, the team injected skeletal muscle tropomyosin into epithelial cells in a wound-healing model. Tropomyosin normally resides in lamellae and is excluded from lamellipodia. Increasing the amount of tropomyosin pushed it into lamellipodia and disrupted resident molecules, including Arp2/3 and ADF/cofilin, which are concentrated in lamellipodia but not in lamellae. Video qFSM showed that excess tropomyosin disrupted actin treadmilling, which is a critical component of lamellipodial function. By contrast, retrograde actin flow in the lamella was not blocked under these conditions. Cells with elevated tropomyosin had more persistent leading edge movement, less retraction, and doubled their migration speed relative to untreated cells.
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0 R0 G6 R3 _0 B2 h% q% mAdhesion proteins accumulate at the junction between the lamellipodia and the lamella in untreated cells. In treated cells the contraction of the lamella's actin filaments appeared to be sufficient to pull the rear of the cell toward these adhesion junctions while the leading edge was pushed forward.
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' f9 G5 C- X: Q7 CGupton et al. hypothesize that lamellipodia are involved in rapid response to extracellular cues and setting up directionality. If that's true, then cells treated with tropomyosin would be less responsive to a chemotactic gradient. The cells used in the current wound model have only one direction in which to go, which could be why they move normally without lamellipodia.(The localization of Arp2/3 (white) in la)

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沙发
发表于 2015-5-28 19:07 |只看该作者
不错,支持下  

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藤椅
发表于 2015-6-10 13:27 |只看该作者
声明一下:本人看贴和回贴的规则,好贴必看,精华贴必回。  

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板凳
发表于 2015-7-9 10:18 |只看该作者
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太棒了!  

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报纸
发表于 2015-8-12 20:08 |只看该作者
间充质干细胞

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地板
发表于 2015-8-13 14:10 |只看该作者
今天无聊来逛逛  

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发表于 2015-9-22 22:18 |只看该作者
这个贴好像之前没见过  

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发表于 2015-9-28 02:13 |只看该作者
应该加分  

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发表于 2015-10-17 14:42 |只看该作者
赚点分不容易啊  

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发表于 2015-10-19 13:00 |只看该作者
文笔流畅,修辞得体,深得魏晋诸朝遗风,更将唐风宋骨发扬得入木三分,能在有生之年看见楼主的这个帖子。实在是我三生之幸啊。  
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