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Stathmin Activity Influences Sarcoma Cell Shape Motility and Metastatic Potential

机译:Stathmin活动影响肉瘤细胞的形状运动性和转移潜能

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摘要

The balanced activity of microtubule-stabilizing and -destabilizing proteins determines the extent of microtubule dynamics, which is implicated in many cellular processes, including adhesion, migration, and morphology. Among the destabilizing proteins, stathmin is overexpressed in different human malignancies and has been recently linked to the regulation of cell motility. The observation that stathmin was overexpressed in human recurrent and metastatic sarcomas prompted us to investigate stathmin contribution to tumor local invasiveness and distant dissemination. We found that stathmin stimulated cell motility in and through the extracellular matrix (ECM) in vitro and increased the metastatic potential of sarcoma cells in vivo. On contact with the ECM, stathmin was negatively regulated by phosphorylation. Accordingly, a less phosphorylable stathmin point mutant impaired ECM-induced microtubule stabilization and conferred a higher invasive potential, inducing a rounded cell shape coupled with amoeboid-like motility in three-dimensional matrices. Our results indicate that stathmin plays a significant role in tumor metastasis formation, a finding that could lead to exploitation of stathmin as a target of new antimetastatic drugs.
机译:微管稳定蛋白和去稳定蛋白的平衡活性决定了微管动力学的程度,这与许多细胞过程有关,包括粘附,迁移和形态。在破坏稳定的蛋白质中,stathmin在不同的人类恶性肿瘤中过表达,并且最近与细胞运动的调节有关。观察到stathmin在人类复发和转移性肉瘤中过表达,这促使我们研究stathmin对肿瘤局部浸润性和远处扩散的影响。我们发现,stathmin在体外可刺激细胞内和通过细胞外基质(ECM)的运动,并在体内增加了肉瘤细胞的转移潜能。与ECM接触后,stathmin受磷酸化负调控。因此,磷酸化程度较小的athathmin点突变体会损害ECM诱导的微管稳定性,并赋予较高的侵袭潜力,从而在3D矩阵中诱导圆形细胞形状并伴随类阿片样运动。我们的结果表明,stathmin在肿瘤转移的形成中起着重要作用,这一发现可能导致stathmin被用作新的抗转移药物的靶标。

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