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Ena/VASP蛋白介导对ephrin配体的排斥作用。

Ena/VASP proteins mediate repulsion from ephrin ligands.

作者信息

Evans Iwan R, Renne Thomas, Gertler Frank B, Nobes Catherine D

机构信息

Department of Biochemistry, School of Medical Sciences, University of Bristol, University Walk, Bristol, BS8 1TD, UK.

出版信息

J Cell Sci. 2007 Jan 15;120(Pt 2):289-98. doi: 10.1242/jcs.03333. Epub 2006 Dec 19.

Abstract

Ena/VASP proteins negatively regulate cell motility and contribute to repulsion from several guidance cues; however, there is currently no evidence for a role downstream of Eph receptors. Eph receptors mediate repulsion from ephrins at sites of intercellular contact during several developmental migrations. For example, the expression of ephrin-Bs in posterior halves of somites restricts neural crest cell migration to the anterior halves. Here we show that ephrin-B2 destabilises neural crest cell lamellipodia when presented in a substrate-bound or soluble form. Our timelapse studies show that repulsive events are associated with the rearward collapse and subsequent loss of lamellipodia as membrane ruffles. We hypothesise that Ena/VASP proteins contribute to repulsion from ephrins by destabilising cellular protrusions and show that Ena/VASP-deficient fibroblasts exhibit reduced repulsion from both ephrin-A and ephrin-B stripes compared to wild-type controls. Moreover, when EphB4 and ephrin-B2 were expressed in neighbouring Swiss 3T3 fibroblasts, VASP and Mena co-accumulated with activated Eph receptors at protrusions formed by EphB4-expressing cells. Sequestration of Ena/VASP proteins away from the periphery of these cells inhibited Eph receptor internalisation, a process that facilitates repulsion. Our results suggest that Ena/VASP proteins regulate ephrin-induced Eph receptor signalling events, possibly by destabilising lamellipodial protrusions.

摘要

Ena/VASP蛋白对细胞运动具有负向调节作用,并参与对多种导向信号的排斥反应;然而,目前尚无证据表明其在Eph受体下游发挥作用。在多个发育迁移过程中,Eph受体在细胞间接触部位介导对ephrin的排斥反应。例如,体节后半部分中ephrin-Bs的表达将神经嵴细胞的迁移限制在前半部分。在此,我们发现,以底物结合形式或可溶性形式呈现时,ephrin-B2会使神经嵴细胞的片状伪足不稳定。我们的延时研究表明,排斥事件与片状伪足作为膜皱褶向后塌陷并随后消失有关。我们推测,Ena/VASP蛋白通过使细胞突起不稳定来参与对ephrin的排斥反应,并表明与野生型对照相比,缺乏Ena/VASP的成纤维细胞对ephrin-A和ephrin-B条纹的排斥反应减弱。此外,当EphB4和ephrin-B2在相邻的瑞士3T3成纤维细胞中表达时,VASP和Mena与活化的Eph受体在由表达EphB4的细胞形成的突起处共同积累。将Ena/VASP蛋白从这些细胞的周边隔离会抑制Eph受体内化,而这一过程有助于排斥反应。我们的结果表明,Ena/VASP蛋白可能通过使片状伪足突起不稳定来调节ephrin诱导的Eph受体信号事件。

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