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JS-K, a GST-activated nitric oxide generator, induces DNA double-strand breaks, activates DNA damage response pathways, and induces apoptosis in vitro and in vivo in human multiple myeloma cells

机译:JS-K,由GST激活的一氧化氮产生剂,诱导DNA双链断裂,激活DNA损伤反应途径,并在人多发性骨髓瘤细胞中体内外诱导凋亡。

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摘要

Here we investigated the cytotoxicity of JS-K, a prodrug designed to release nitric oxide (NO•) following reaction with glutathione S-transferases, in multiple myeloma (MM). JS-K showed significant cytotoxicity in both conventional therapy-sensitive and -resistant MM cell lines, as well as patient-derived MM cells. JS-K induced apoptosis in MM cells, which was associated with PARP, caspase-8, and caspase-9 cleavage; increased Fas/CD95 expression; Mcl-1 cleavage; and Bcl-2 phosphorylation, as well as cytochrome c, apoptosis-inducing factor (AIF), and endonuclease G (EndoG) release. Moreover, JS-K overcame the survival advantages conferred by interleukin-6 (IL-6) and insulin-like growth factor 1 (IGF-1), or by adherence of MM cells to bone marrow stromal cells. Mechanistic studies revealed that JS-K–induced cytotoxicity was mediated via NO• in MM cells. Furthermore, JS-K induced DNA double-strand breaks (DSBs) and activated DNA damage responses, as evidenced by neutral comet assay, as well as H2AX, Chk2 and p53 phosphorylation. JS-K also activated c-Jun NH2-terminal kinase (JNK) in MM cells; conversely, inhibition of JNK markedly decreased JS-K–induced cytotoxicity. Importantly, bortezomib significantly enhanced JS-K–induced cytotoxicity. Finally, JS-K is well tolerated, inhibits tumor growth, and prolongs survival in a human MM xenograft mouse model. Taken together, these data provide the preclinical rationale for the clinical evaluation of JS-K to improve patient outcome in MM.
机译:在这里,我们研究了JS-K(一种旨在与谷胱甘肽S-转移酶反应后释放一氧化氮(NO•))在多发性骨髓瘤(MM)中的细胞毒性。 JS-K在常规的对治疗敏感和耐药的MM细胞系以及患者来源的MM细胞中均显示出明显的细胞毒性。 JS-K诱导MM细胞凋亡,这与PARP,caspase-8和caspase-9裂解有关。 Fas / CD95表达增加; Mcl-1裂解;和Bcl-2磷酸化,以及细胞色素c,凋亡诱导因子(AIF)和内切核酸酶G(EndoG)释放。此外,JS-K克服了白介素6(IL-6)和胰岛素样生长因子1(IGF-1)或MM细胞与骨髓基质细胞的粘附所赋予的生存优势。机理研究表明,JS-K诱导的细胞毒性是通过MM细胞中的NO•介导的。此外,中性彗星试验以及H2AX,Chk2和p53磷酸化证明,JS-K诱导了DNA双链断裂(DSB)和活化的DNA损伤反应。 JS-K还激活MM细胞中的c-Jun NH2-末端激酶(JNK);相反,抑制JNK明显降低了JS-K诱导的细胞毒性。重要的是,硼替佐米显着增强了JS-K诱导的细胞毒性。最后,在人类MM异种移植小鼠模型中,JS-K具有良好的耐受性,可抑制肿瘤生长并延长生存期。综上所述,这些数据为JS-K改善MM患者预后的临床评估提供了临床前依据。

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