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Preclinical Development of Novel Rac1-GEF Signaling Inhibitors using a Rational Design Approach in Highly Aggressive Breast Cancer Cell Lines

机译:在高度侵袭性乳腺癌细胞系中使用合理设计方法开发新型Rac1-GEF信号抑制剂的临床前开发

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摘要

Rho GTPases play a key role in the regulation of multiple essential cellular processes, including actin dynamics, gene transcription and cell cycle progression. Aberrant activation of Rac1, a member of Rho family of small GTPases, is associated with tumorigenesis, cancer progression, invasion and metastasis. Particularly, Rac1 is overexpressed and hyperactivated in highly aggressive breast cancer. Thus, Rac1 appears to be a promising and relevant target for the development of novel anticancer drugs. We identified the novel Rac1 inhibitor ZINC69391 through a docking-based virtual library screening targeting Rac1 activation by GEFs. This compound was able to block Rac1 interaction with its GEF Tiam1, prevented EGF-induced Rac1 activation and inhibited cell proliferation, cell migration and cell cycle progression in highly aggressive breast cancer cell lines. Moreover, ZINC69391 showed an in vivo antimetastatic effect in a syngeneic animal model. We further developed the novel analog 1A-116 by rational design and showed to be specific and more potent than the parental compound in vitro and interfered Rac1-P-Rex1 interaction. We also showed an enhanced in vivo potency of 1A-116 analog. These results show that we have developed novel Rac1 inhibitors that may be used as a novel anticancer therapy.
机译:Rho GTPases在多种重要细胞过程的调控中起着关键作用,包括肌动蛋白动力学,基因转录和细胞周期进程。 Rac1,小型GTPases Rho家族的成员,异常激活与肿瘤的发生,癌症的进展,侵袭和转移有关。特别是,Rac1在高度侵袭性乳腺癌中过表达和过度活化。因此,Rac1似乎是新的抗癌药物开发的有希望和相关的目标。我们通过靶向GEFs激活Rac1的基于对接的虚拟文库筛选,鉴定了新型Rac1抑制剂ZINC69391。该化合物能够阻止Rac1与它的GEF Tiam1相互作用,阻止EGF诱导的Rac1活化并抑制高度侵袭性乳腺癌细胞系中的细胞增殖,细胞迁移和细胞周期进程。此外,ZINC69391在同系动物模型中显示出体内抗转移作用。我们通过合理的设计进一步开发了新颖的类似物1A-116,并在体外显示出比亲本化合物更特异性和更强的活性,并干扰了Rac1-P-Rex1的相互作用。我们还显示了增强的1A-116类似物的体内效能。这些结果表明,我们已经开发出可用作新型抗癌疗法的新型Rac1抑制剂。

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