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首页> 外文期刊>Journal of Biophysical and Biochemical Cytology >WASP family proteins and formins compete in pseudopod- and bleb-based migration
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WASP family proteins and formins compete in pseudopod- and bleb-based migration

机译:黄蜂家族蛋白质和素质在伪多达和基于BLEB的迁移中竞争

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Actin pseudopods induced by SCAR/WAVE drive normal migration and chemotaxis in eukaryotic cells. Cells can also migrate using blebs, in which the edge is driven forward by hydrostatic pressure instead of actin. In Dictyostelium discoideum , loss of SCAR is compensated by WASP moving to the leading edge to generate morphologically normal pseudopods. Here we use an inducible double knockout to show that cells lacking both SCAR and WASP are unable to grow, make pseudopods or, unexpectedly, migrate using blebs. Remarkably, amounts and dynamics of actin polymerization are normal. Pseudopods are replaced in double SCAR/WASP mutants by aberrant filopods, induced by the formin dDia2. Further disruption of the gene for dDia2 restores cells’ ability to initiate blebs and thus migrate, though pseudopods are still lost. Triple knockout cells still contain near-normal F-actin levels. This work shows that SCAR, WASP, and dDia2 compete for actin. Loss of SCAR and WASP causes excessive dDia2 activity, maintaining F-actin levels but blocking pseudopod and bleb formation and migration.
机译:瘢痕/波驱动正常迁移和趋化性在真核细胞中诱导的肌动蛋白假偶。细胞也可以使用填充迁移,其中边缘由静压压力而不是肌动蛋白向前驱动。在Dictyostelium Discoidum中,通过黄蜂移动到前缘的黄蜂来补偿瘢痕的损失,以产生形态正常的假伪孔。在这里,我们使用诱导型双重敲除来表明缺乏瘢痕和黄蜂的细胞无法生长,使假偶或意外,使用填充迁移。显着,肌动蛋白聚合的量和动态是正常的。通过异常的Filopods在双瘢痕/黄蜂突变体中取代假蛋白,由甲状腺蛋白DDIA2诱导。对于DDIA2的进一步破坏基因恢复细胞引发脑筋急兴的能力,从而迁移,尽管伪低压仍然丢失。三重敲除细胞仍然含有近似正常的F-actin水平。这项工作表明,疤痕,黄蜂和DDIA2竞争actin。瘢痕和黄蜂的丧失会导致DDIA2的过度活动,维持F-actin水平,但阻止伪多样化和BLEB形成和迁移。

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