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Sur-X, a novel peptide, kills colorectal cancer cells by targeting survivin-XIAP complex

机译:新型肽Sur-X通过靶向Survivin-XIAP综合体杀死结肠直肠癌细胞

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Survivin and XIAP are two important members of the inhibitor of apoptosis protein family and have been considered as potential targets for cancer treatment due to their overexpression in large variety of cancers including colorectal cancer. It has been reported that survivin and XIAP can synergistically inhibit apoptosis by forming survivin-XIAP complex. In this study, we aimed to design a peptide that targets the survivin-XIAP complex and elucidate its anticancer mechanisms in colorectal cancer cells. We designed and synthetized Sur-X, the peptide targeting survivin-XIAP complex. The anticancer effects of Sur-X were evaluated both in vitro and in vivo. The underlying molecular mechanisms were also investigated. Sur-X exhibited potent inhibitory effects on four colorectal cancer cell lines HCT116, HCT15, RKO and HT29, but not on human peritoneal mesothelial cell line HMrSV5. Mechanistically, Sur-X induced Caspase 9-dependent intrinsic apoptosis in colorectal cancer cells by disrupting the survivin-XIAP complex and subsequently destabilizing survivin and XIAP. Interestingly, we found that Sur-X can also promote necroptosis. It was demonstrated that Sur-X destroyed the interaction between XIAP and TAB1 in the XIAP-TAB1-TAK1 complex, leading to the instability of TAK1, an endogenous necroptosis inhibitor. Subsequently, the accelerated degradation of TAK1 attenuated its inhibition on necroptosis in colorectal cancer cells. Moreover, knockdown of TAK1 restored the sensitivity of TAB1-overexpressing colorectal cancer cells to Sur-X-induced necroptosis. The in vivo pro-apoptotic effect of Sur-X was confirmed by the enhanced TUNEL staining and the decreased expression of survivin and XIAP in tumor tissues from xenograft mouse models. In addition, extensive necrosis and weaker MLKL expression in xenografts provided evidence for the in vivo pro-necroptotic effect of Sur-X. Peptide Sur-X exhibits strong pro-apoptotic and pro-necroptotic effects in colorectal cancer cells and has a high clinical translation potential in the treatment of colorectal cancer.
机译:Survivin和XIAP是凋亡蛋白家族抑制剂的两个重要成员,由于它们在包括结肠直肠癌的各种癌症中的过度表达而被认为是癌症治疗的潜在目标。据报道,Survivin和XIAP可以通过形成Survivin-XIAP综合体来协同抑制细胞凋亡。在这项研究中,我们旨在设计一种靶向Survivin-XIAP复合物的肽,并阐明其在结肠直肠癌细胞中的抗癌机制。我们设计和合成的SUR-X,靶向Survivin-XIAP综合体。 SUR-X的抗癌效果在体外和体内评估。还研究了潜在的分子机制。 SUR-X对四种结直肠癌细胞系HCT116,HCT15,RKO和HT29表现出有效的抑制作用,但不是人类腹膜间皮细胞系HMRSv5。通过破坏Survivin-XIAP复合物,随后破坏Survivin和XIAP,机械地,SUR-X诱导结肠癌细胞中的Caspase 9依赖性内在凋亡。有趣的是,我们发现Sur-X也可以促进坏死。据证明SUR-X在XIAP-TAB1-TAK1复合物中摧毁了XIAP和TAB1之间的相互作用,导致TAK1的不稳定性,内源性虐高抑制剂。随后,TAK1的加速降解抑制了其对结直肠癌细胞中的肮脏病的抑制作用。此外,TAK1的敲低恢复了舌塔 - 过度表达结直肠癌细胞的敏感性至SUR-X诱导的坏死。 SUR-X的体内凋亡效应通过增强的TUNEL染色和来自异种移植小鼠模型的肿瘤组织中的Survivin和XIAP的表达降低。此外,异种移植物中的大量坏死和MLK1较弱的MLK1表达为SUR-X的体内骨髓性效应提供了证据。肽SUR-X在结肠直肠癌细胞中表现出强烈的促凋亡和亲阴沉的作用,并在治疗结直肠癌中具有高临床翻译潜力。

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