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Novel role of ASC as a regulator of metastatic phenotype

机译:ASC作为转移表型调节剂的新作用

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摘要

Disorders of cytoskeletal remodeling and signal transduction are frequently involved in cancer progression. In particular, apoptosis‐associated speck‐like protein containing a caspase‐recruitment domain (ASC) has been reported a proapoptotic molecule that is epigenetically silenced in several human cancers. ASC is a well‐characterized adaptor protein involved in the formation of multiprotein oligomers, called inflammasomes, and plays a crucial role in the activation and secretion of interleukin‐1β and interleukin‐18 in innate immune cells. However, the function of ASC in the regulation of tumor progression remains elusive. The present investigation examined the involvement of ASC in cancer progression and the acquisition of metastatic ability. To determine the effect of ASC depletion in in vitro and in vivo model systems, ASC was stably knocked down in B16 murine melanoma cell lines using retroviral transduction of shRNA. ASC suppression increased the motility of B16BL6 cells in scratch assays and augmented invasiveness as assessed by a Matrigel‐coated transwell system. Invadopodia formation and Src phosphorylation level were markedly enhanced in ASC‐knockdown cells as well. Since caspase‐8 has been reported to enhance cellular migration by Tyr380 phosphorylation via Src, we examined Tyr380 phosphorylation of caspase‐8 in ASC‐knockdown cells and found it to be elevated in ASC‐knockdown cells but attenuated by z‐VAD‐fmk or z‐IETD‐fmk. Moreover, ASC ablation increased pulmonary metastasis in mice after intravenous injection of B16BL6 cells. Our cumulative findings indicate that style="fixed-case">ASC suppresses cancer metastasis and progression via the modulation of cytoskeletal remodeling and the Src‐caspase‐8 signaling pathway.
机译:细胞骨架重塑和信号转导疾病通常与癌症进展有关。特别是,据报道,含有胱天蛋白酶募集结构域(ASC)的凋亡相关斑点样蛋白是一种促凋亡分子,在几种人类癌症中均被表观遗传沉默。 ASC是一种表征良好的衔接蛋白,参与称为炎症小体的多蛋白寡聚体的形成,并且在先天免疫细胞中白介素-1β和白介素-18的激活和分泌中起着关键作用。但是,ASC在调节肿瘤进展中的功能仍然难以捉摸。本研究检查了ASC参与癌症进展和转移能力的获得。为了确定ASC耗竭在体外和体内模型系统中的作用,使用逆转录病毒转导shRNA在B16鼠黑素瘤细胞系中稳定敲低ASC。 ASC抑制作用在刮擦试验中增加了B16BL6细胞的运动能力,并通过基质胶包被的Transwell系统评估了侵袭性。 Insadopodia的形成和Src磷酸化水平在ASC击倒细胞中也显着增强。由于据报道caspase-8通过Src通过Tyr380磷酸化增强细胞迁移,因此我们检查了ASC基因敲低细胞中caspase-8的Tyr380磷酸化,发现它在ASC基因敲低的细胞中升高,但被z-VADfmk或减弱。 z‐IETD‐fmk。此外,ASC消融增加了静脉注射B16BL6细胞后小鼠的肺转移。我们的累积发现表明 style =“ fixed-case”> ASC 通过调节细胞骨架重塑和Src-caspase-8信号通路来抑制癌症的转移和进展。

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