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The autophagy-independent role of BECN1 in colorectal cancer metastasis through regulating STAT3 signaling pathway activation

机译:通过调节STAT3信号通路激活,通过调节STAT3信号传导途径依赖于直肠癌转移的自噬作用

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BECN1 is a critical regulator of autophagy, which plays important roles in tumor formation and metastasis. However, the autophagy-independent role of BECN1 and the clinical prediction value of BECN1 still need to be explored. Here, we observed significantly lower expression of BECN1 in colorectal cancers (CRCs) compared with adjacent normal colon tissue, and downregulation of BECN1 was positively related to poor prognosis in CRC patients. In addition, we found that knockdown of BECN1 markedly promoted CRC cell motility and invasion. Bioinformatics gene set enrichment analysis (GSEA) revealed that low levels of BECN1 were significantly correlated with the STAT3 signaling pathway in CRC. Consistently, knockdown of BECN1 increased the phosphorylation of STAT3 and activated the STAT3 signaling pathway in CRC cells. Furthermore, we demonstrated that STAT3 was involved in the CRC metastasis mediated by knockdown of BECN1 in vitro and in vivo. Mechanistically, knockdown of BECN1 promoted the phosphorylation of STAT3 via regulation of the interaction between STAT and JAK2 but did not inhibit autophagy. Our study revealed that BECN1 served as a negative regulator of CRC metastasis by regulating STAT3 signaling pathway activation in an autophagy-independent manner. The BECN1/JAK2/STAT3 signaling pathway can be used as a potential therapeutic target for metastatic CRC.
机译:BECN1是自噬的一个关键调节因素,其在肿瘤形成和转移中起重要作用。然而,仍需要探索BECN1的自噬 - 独立作用和BECN1的临床预测价值。这里,与相邻的正常结肠组织相比,我们观察到与相邻正常结肠组织相比的结肠直肠癌(CRCS)的表达显着降低,BECN1的下调与CRC患者的预后呈正相关。此外,我们发现BECN1的敲低明显促进了CRC细胞运动和入侵。生物信息学基因设定浓缩分析(GSEA)显示,低水平的BECN1与CRC中的STAT3信号通路显着相关。始终如一地,BECN1的敲低增加了STAT3的磷酸化并激活了CRC细胞中的STAT3信号通路。此外,我们证明了STAT3参与了在体外和体内敲低的CRC转移。机械地,通过调节统计和JAK2之间的相互作用,损伤BECN1的敲低促进了STAT3的磷酸化,但未抑制自噬。我们的研究表明,通过以自自噬的方式调节STAT3信号传导途径激活,BECN1作为CRC转移的负调节因子。 BECN1 / JAK2 / Stat3信号通路可用作转移CRC的潜在治疗靶标。

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