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Breaking cell bonds [复制链接]

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发表于 2009-3-6 08:44 |只看该作者 |倒序浏览 |打印
Cell–cell junctions are pulled apart by cytoskeletal traction forces during epithelial cell scattering. The results from De Rooij et al. (page 153) suggest that down-regulation of the cell–cell glue, E-cadherin, is not required in this process.
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5 V1 |" R" n1 n4 J3 l% _8 EDuring cell scattering induced by hepatocyte growth factor (HGF), cell contacts must necessarily be disrupted. The down–regulation of E-cadherin expression or function by HGF has thus been the focus of attention for researchers interested in how epithelial cells acquire migratory abilities. Now, the new findings indicate that cadherins remain functional but are forcibly ripped apart.' Q/ U' O$ ?1 k3 D& q

# c* x) a/ z8 n# x+ `: ^HGF-treated cells that did not migrate away from their neighbors maintained functional E-cadherin adhesions. New adhesions were also built as scattering cells made new encounters. Though working properly, E-cadherin adhesions were rapidly lost just as cells started migrating.According to the authors, the cell–cell junctions are pulled apart by forces stemming from cell–matrix adhesions. Thick actin bundles were seen between matrix-attached focal adhesions in distant parts of the cell and those adjacent to cadherin-based junctions. Active myosin, which contracts actin fibers, localized along these bundles upon HGF treatment.
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8 N% E, X3 \- [: F: UStrong integrin-based adhesions to collagen and fibronectin supported fast, efficient scattering. The weaker bonds of laminin were less efficient in inducing scattering, even though laminin supported the fastest migration velocity.) M" ?! Q/ e% L5 m3 {, o# O

/ D7 l. D2 m  G) J* VSome tension is required to maintain cell–cell adhesions, but clearly too much can be their downfall. The authors are thus curious to know how adhesions measure tension levels and how E-cadherin junctions are pulled apart. Only thin actin filaments were seen linking the cytoskeleton to a cell–cell junction under tension. As thin filaments are probably not strong enough to break cadherin bonds, perhaps a stiff membrane helps out.( J! n# T! u7 @* O8 Z) G

4 ^; y3 L, Y. ^0 U1 `As scattering is a model for metastasis, the results are supported by recent findings from others that increased stiffness promotes malignant behavior (Paszek et al. 2005. Cancer Cell. 8:241–254). De Rooij believes that contraction forces are also likely to control the transient lapses in endothelial cell–cell adhesions that allow immune cells to leave the vasculature.(Myosin (red) contraction of actin (green)

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发表于 2015-6-14 20:01 |只看该作者
羊水干细胞

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藤椅
发表于 2015-6-29 08:27 |只看该作者
不管你信不信,反正我信  

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发表于 2015-7-9 16:54 |只看该作者
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心脏干细胞

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报纸
发表于 2015-7-10 12:27 |只看该作者
有才的不在少数啊  

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发表于 2015-7-22 11:44 |只看该作者
发贴看看自己积分  

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发表于 2015-7-28 11:35 |只看该作者
长时间没来看了 ~~  

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发表于 2015-8-22 08:01 |只看该作者
好人一个  

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发表于 2015-8-22 12:54 |只看该作者
21世纪,什么最重要——我!  

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发表于 2015-8-29 11:09 |只看该作者
不看白不看,看也不白看  
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