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首页> 外文期刊>Cancer biology & therapy >Maspin regulates different signaling pathways for motility and adhesion in aggressive breast cancer cells.
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Maspin regulates different signaling pathways for motility and adhesion in aggressive breast cancer cells.

机译:Maspin调节侵袭性乳腺癌细胞运动和粘附的不同信号通路。

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Previous studies from our laboratory and others have demonstrated that treatment of breast cancer cells with exogenous maspin led to a significant decrease in cell motility, and an increase in cell adhesion to human fibronectin. However, the signaling mechanisms by which maspin, a putative tumor suppressor gene, might regulate cell motility and adhesion have not been previously addressed. In this study, we hypothesized that maspin could inhibit cell motility through the Rho GTPase pathway, specifically by affecting Rac activity. To test this intriguing hypothesis we utilized an experimental approach where invasive and metastatic MDA-MB-231 breast cancer cells were either treated exogenously with recombinant maspin protein, or stably transfected with maspin. The data revealed decreased Rac1 activity within 4 h, and a decrease in the Rac1 effector, PAK1, within 12 h. In addition, an increase in PI3K and ERK1/2 activities within 1 h of recombinant maspin (rMaspin) treatment was observed, which returned tobaseline level after 12 h. ERK activity was shown to be downstream of PI3K, as pretreatment with the PI3K inhibitor, LY294002, inhibited the stimulation of ERK activity by rMaspin. Furthermore, rMaspintreated cells displayed approximately a 30% increase in cell adhesion which was abrogated by pretreatment with LY294002. Increased focal adhesions and stress fibers were observed after 12 h of rMaspin treatment, when the cells were least motile and had reverted to a more epithelial-like phenotype. These data suggest that maspin may inhibit cell motility by regulating Rac1 and subsequently PAK1 activity, and promote cell adhesion via PI3K/ERK pathways. This study provides new insights into the diverse signaling pathways affected by maspin to suppress the metastatic phenotype, and could contribute to novel therapeutic approaches for the treatment of invasive and metastatic breast cancer.
机译:我们实验室和其他实验室的先前研究表明,用外源性Maspin治疗乳腺癌细胞会导致细胞运动性显着降低,以及细胞与人纤连蛋白的粘附性增加。然而,以前尚未探讨过马斯平(一种可能的肿瘤抑制基因)可能调节细胞运动性和粘附的信号传导机制。在这项研究中,我们假设maspin可以通过Rho GTPase途径抑制细胞运动,特别是通过影响Rac活性。为了检验这个有趣的假设,我们使用了一种实验方法,其中侵袭性和转移性MDA-MB-231乳腺癌细胞要么用重组maspin蛋白外源处理,要么用maspin稳定转染。数据显示,Rac1活性在4小时内降低,而Rac1效应物PAK1在12小时内降低。此外,重组maspin(rMaspin)处理1 h内PI3K和ERK1 / 2活性增加,在12 h后恢复到基线水平。 ERK活性显示在PI3K的下游,因为用PI3K抑制剂LY294002进行的预处理抑制了rMaspin对ERK活性的刺激。此外,rMaspin处理的细胞显示出约30%的细胞粘附性增加,这通过用LY294002预处理消除。 rMaspin处理12小时后,当细胞的活动性最低并恢复为更上皮样的表型时,观察到了粘着斑和应力纤维的增加。这些数据表明,maspin可能通过调节Rac1和随后的PAK1活性来抑制细胞运动,并通过PI3K / ERK途径促进细胞粘附。这项研究为受maspin抑制转移表型影响的多种信号通路提供了新见解,并可能有助于治疗浸润性和转移性乳腺癌的新型治疗方法。

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