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Dynamin participates in focal extracellular matrix degradation by invasive cells

机译:动力蛋白参与侵入性细胞的局灶性细胞外基质降解

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The degradation of extracellular matrix (ECM) by matrix metalloproteases is crucial in physiological and pathological cell invasion alike. Degradation occurs at specific sites where invasive cells make contact with the ECM via specialized plasma membrane protrusions termed invadopodia. Herein, we show that the dynamin 2 (Dyn2), a GTPase implicated in the control of actin-driven cytoskeletal remodeling events and membrane transport, is necessary for focalized matrix degradation at invadopodia. Dynamin was inhibited by using two approaches: 1) expression of dominant negative GTPase-impaired or proline-rich domain-deleted Dyn2 mutants; and 2) inhibition of the dynamin regulator calcineurin by cyclosporin A. In both cases, the number and extension of ECM degradation foci were drastically reduced. To understand the site and mechanism of dynamin action, the cellular structures devoted to ECM degradation were analyzed by correlative confocal light-electron microscopy. Invadopodia were found to be organized into a previously undescribed ECM-degradation structure consisting of a large invagination of the ventral plasma membrane surface in close spatial relationship with the Golgi complex. Dyn2 seemed to be concentrated at invadopodia. [References: 58]
机译:基质金属蛋白酶对细胞外基质(ECM)的降解对于生理和病理性细胞入侵均至关重要。降解发生在特定部位,在这些部位,浸润性细胞会通过专门的质膜突起(称为invadopodia)与ECM接触。在这里,我们表明,dynamin 2(Dyn2),一种牵连在肌动蛋白驱动的细胞骨架重塑事件和膜运输的控制中的GTP酶,是侵袭性伪足基质降解的必要条件。用两种方法抑制动力蛋白:1)显性负性GTPase受损或脯氨酸富集的结构域缺失的Dyn2突变体的表达; 2)环孢菌素A对动力调节剂钙调神经磷酸酶的抑制。在两种情况下,ECM降解灶的数量和延伸都大大减少了。为了了解动力蛋白作用的部位和机理,通过相关的共聚焦光电子显微镜分析了致力于ECM降解的细胞结构。发现Invadopodia被组织成先前未描述的ECM降解结构,该结构由与高尔基复合体紧密的空间关系的腹质膜表面的较大内陷组成。 Dyn2似乎集中在invadopodia。 [参考:58]

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