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活性 Rac1 和磷酸化 Bcl-2 之间的前馈关系对于维持 Bcl-2 磷酸化和促进癌症进展至关重要。

A feedforward relationship between active Rac1 and phosphorylated Bcl-2 is critical for sustaining Bcl-2 phosphorylation and promoting cancer progression.

机构信息

Department of Physiology, Yong Loo Lin School of Medicine, National University of Singapore (NUS), Singapore; Medical Science Cluster Cancer Program, Yong Loo Lin School of Medicine, National University of Singapore (NUS), Singapore.

Department of Physiology, Yong Loo Lin School of Medicine, National University of Singapore (NUS), Singapore.

出版信息

Cancer Lett. 2019 Aug 10;457:151-167. doi: 10.1016/j.canlet.2019.05.009. Epub 2019 May 17.

Abstract

Active GTPase-Rac1 is associated with cellular processes involved in carcinogenesis and expression of Bcl-2 endows cells with the ability to evade apoptosis. Here we provide evidence that active Rac1 and Bcl-2 work in a positive feedforward loop to promote sustained phosphorylation of Bcl-2 at serine-70 (S70pBcl-2), which stabilizes its anti-apoptotic activity. Pharmacological and genetic inactivation of Rac1 prevent interaction with Bcl-2 and reduce S70pBcl-2. Similarly, BH3-mimetic inhibitors of Bcl-2 could disrupt Rac1-Bcl-2 interaction and reduce S70pBcl-2. This effect of active Rac1 could also be rescued by scavengers of intracellular superoxide (O), thus implicating NOX-activating activity of Rac1 in promoting S70pBcl-2. Moreover, active Rac1-mediated redox-dependent S70pBcl-2 involves the inhibition of phosphatase PP2A holoenzyme assembly. Sustained S70pBcl-2 in turn secures Rac1/Bcl-2 interaction. Importantly, inhibiting Rac1 activity, scavenging O or employing BH3-mimetic inhibitor significantly reduced S70pBcl-2-mediated survival in cancer cells. Notably, Rac1 expression, and its interaction with Bcl-2, positively correlate with S70pBcl-2 levels in patient-derived lymphoma tissues and with advanced stage lymphoma and melanoma. Together, we provide evidence of a positive feedforward loop involving active Rac1, S70pBcl-2 and PP2A, which could have potential diagnostic, prognostic and therapeutic implications.

摘要

活性 GTPase-Rac1 与参与致癌作用的细胞过程有关,Bcl-2 的表达赋予细胞逃避细胞凋亡的能力。在这里,我们提供的证据表明,活性 Rac1 和 Bcl-2 以正反馈环的方式协同作用,促进 Bcl-2 在丝氨酸 70 位(S70pBcl-2)的持续磷酸化,从而稳定其抗凋亡活性。Rac1 的药理学和遗传学失活可阻止其与 Bcl-2 的相互作用并减少 S70pBcl-2。类似地,Bcl-2 的 BH3 模拟抑制剂可以破坏 Rac1-Bcl-2 相互作用并减少 S70pBcl-2。这种活性 Rac1 的作用也可以被细胞内超氧化物(O)清除剂所挽救,因此表明 Rac1 的 NOX 激活活性在促进 S70pBcl-2 中起作用。此外,活性 Rac1 介导的依赖于氧化还原的 S70pBcl-2 涉及磷酸酶 PP2A 全酶组装的抑制。持续的 S70pBcl-2 反过来又确保了 Rac1/Bcl-2 相互作用。重要的是,抑制 Rac1 活性、清除 O 或使用 BH3 模拟抑制剂可显著降低癌症细胞中 S70pBcl-2 介导的存活。值得注意的是,Rac1 表达及其与 Bcl-2 的相互作用与患者来源的淋巴瘤组织中 S70pBcl-2 水平以及晚期淋巴瘤和黑色素瘤呈正相关。总之,我们提供了一个涉及活性 Rac1、S70pBcl-2 和 PP2A 的正反馈环的证据,这可能具有潜在的诊断、预后和治疗意义。

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