Streicher Pia, Nassoy Pierre, Bärmann Michael, Dif Aurélien, Marchi-Artzner Valérie, Brochard-Wyart Françoise, Spatz Joachim, Bassereau Patricia
Institut Curie, Centre de Recherche, Université Pierre et Marie Curie, F-75248 Paris, France.
Biochim Biophys Acta. 2009 Oct;1788(10):2291-300. doi: 10.1016/j.bbamem.2009.07.025. Epub 2009 Aug 7.
A novel in vitro membrane system mimicking the first steps of integrin-mediated cell spreading has been developed and characterized. We have reconstituted the transmembrane alpha(IIb)beta(3) integrin into giant unilamellar vesicles (GUVs). The reconstitution process has been validated by analyzing protein incorporation and biological activity by checking the specific interaction of GUVs containing integrin with quantum dots (QD) or surfaces coated with the integrin receptor tri-peptide RGD.(1) The spreading dynamics of integrin-functionalized GUVs onto fibrinogen-coated surfaces has been monitored by Reflection Interference Contrast Microscopy (RICM). Our results are quantitatively consistent with a theoretical model based on a dewetting process coupled to binder diffusion and provide a comprehensive description of the following sequence: i) nucleation and growth of adhesive patches coupled to the diffusion of the adhesive proteins to these adhesive zones ii) fusion of patches and formation of an adhesive ring iii) complete spreading of the GUV by dewetting of the central liquid film from the border to form an adhesive circular patch that is not significantly enriched in integrins, as compared to the unbound membrane. This finding is consistent with the recognized role of the actin cytoskeleton in stabilizing focal complexes and focal adhesions in a cell-extracellular matrix contact. These very large unilamellar integrin-containing vesicles provide a unique artificial system, which could be further developed towards realistic cell mimic and used to study the complexity of integrin-mediated cell spreading.
一种模拟整合素介导的细胞铺展第一步的新型体外膜系统已被开发并表征。我们已将跨膜α(IIb)β(3)整合素重组到巨型单层囊泡(GUV)中。通过分析蛋白质掺入情况并通过检查含有整合素的GUV与量子点(QD)或涂有整合素受体三肽RGD的表面之间的特异性相互作用来验证重组过程。(1) 通过反射干涉对比显微镜(RICM)监测整合素功能化的GUV在纤维蛋白原包被表面上的铺展动力学。我们的结果在定量上与基于去湿过程与粘合剂扩散耦合的理论模型一致,并提供了以下序列的全面描述:i)与粘合剂蛋白向这些粘合区域扩散相关的粘合斑的成核和生长;ii)斑的融合和粘合环的形成;iii)GUV通过中央液膜从边界去湿而完全铺展,形成一个与未结合膜相比在整合素中没有显著富集的粘合圆形斑。这一发现与肌动蛋白细胞骨架在稳定细胞 - 细胞外基质接触中的粘着斑复合物和粘着斑方面所公认的作用一致。这些非常大的含单层整合素的囊泡提供了一个独特的人工系统,可进一步发展为逼真的细胞模拟物,并用于研究整合素介导的细胞铺展的复杂性。