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RanBP9/TSSC3 complex cooperates to suppress anoikis resistance and metastasis via inhibiting Src-mediated Akt signaling in osteosarcoma

机译:RanBP9 / TSSC3复合物通过抑制骨肉瘤中Src介导的Akt信号传导来协同抑制无神经耐药性和转移

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Suppression of anoikis is a prerequisite for tumor cell metastasis, which is correlated with chemoresistance and poor prognosis. We characterized a novel interaction between RanBP9 SPRY domain and TSSC3 PH domain by which RanBP9/TSSC3 complex exerts transcription and post-translation regulation in osteosarcoma. RanBP9/TSSC3 complex was inversely correlated with a highly anoikis-resistant phenotype in osteosarcoma cells and metastasis in human osteosarcoma. RanBP9 cooperated with TSSC3 to inhibit anchorage-independent growth and to promote anoikis in vitro and suppress lung metastasis in vivo . Moreover, RanBP9 SPRY domain was required for RanBP9/TSSC3 complex-mediated anoikis resistance. Mechanistically, RanBP9 formed a ternary complex with TSSC3 and Src to scaffold this interaction, which suppressed both Src and Src-dependent Akt pathway activations and facilitated mitochondrial-associated anoikis. Collectively, the newly identified RanBP9/TSSC3 complex cooperatively suppress metastasis via downregulation of Src-dependent Akt pathway to expedite mitochondrial-associated anoikis. This study provides a biological basis for exploring the therapeutic significance of dual targeting of RanBP9 and TSSC3 in osteosarcoma.
机译:抑制神经失调是肿瘤细胞转移的先决条件,这与化学抗药性和预后不良有关。我们表征了RanBP9 SPRY域和TSSC3 PH域之间的新型相互作用,通过该相互作用RanBP9 / TSSC3复合物在骨肉瘤中发挥转录和翻译后调控的作用。 RanBP9 / TSSC3复合物与骨肉瘤细胞中高度抗厌食症的表型和人类骨肉瘤的转移呈负相关。 RanBP9与TSSC3共同抑制了不依赖贴壁的生长,并在体外促进了神经过敏,并在体内抑制了肺转移。此外,RanBP9 / TSSC3复合物介导的耐阳极氧化作用需要RanBP9 SPRY域。从机理上讲,RanBP9与TSSC3和Src形成三元复合物以支撑这种相互作用,从而抑制了Src和Src依赖性Akt途径的激活,并促进了线粒体相关的凋亡。集体,新发现的RanBP9 / TSSC3复合体通过下调Src依赖的Akt通路来协同抑制转移,以加快线粒体相关的凋亡。该研究为探讨RanBP9和TSSC3双重靶向在骨肉瘤中的治疗意义提供了生物学基础。

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