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首页> 外文期刊>Scientific reports. >Streptomyces sp metabolite(s) promotes Bax mediated intrinsic apoptosis and autophagy involving inhibition of mTOR pathway in cervical cancer cell lines
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Streptomyces sp metabolite(s) promotes Bax mediated intrinsic apoptosis and autophagy involving inhibition of mTOR pathway in cervical cancer cell lines

机译:Streptomyces sp代谢物促进Bax介导的内在细胞凋亡和涉及宫颈癌细胞系中MTOR途径的自噬

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摘要

In cervical cancer, the association between HPV infection and dysregulation of phosphoinositide 3-kinase (PI3K)/protein kinase B (AKT)/mammalian target of rapamycin (mTOR) pathway (PI3K/AKT/mTOR pathway) places mTOR as an attractive therapeutic target. The failure of current treatment modalities in advanced stages of this cancer and drawbacks of already available mTOR inhibitors demand for novel drug candidates. In the present study we identified the presence of a mTOR inhibitor in an active fraction of the ethyl acetate extract of Streptomyces sp OA293. The metabolites(s) in the active fraction completely inhibited mTORC1 and thereby suppressed activation of both of its downstream targets, 4E-BP1 and P70S6k, in cervical cancer cells. In addition, it also stalled Akt activation via inhibition of mTORC2. The mechanism of mTOR inhibition detailed in our study overcomes significant drawbacks of well known mTOR inhibitors such as rapamycin and rapalogs. The active fraction induced autophagy and Bax mediated apoptosis suggesting that mTOR inhibition resulted in programmed cell death of cancer cells. The molecular weight determination of the components in active fraction confirmed the absence of any previously known natural mTOR inhibitor. This is the first report of complete mTOR complex inhibition by a product derived from microbial source.
机译:在宫颈癌中,HPV感染和磷酸膦酸的磷酶3-激酶(PI3K)/蛋白激酶B(AKT)/哺乳动物靶标的关系(PI3K / AKT / MTOR途径)的关联将MTOR作为有吸引力的治疗靶标。目前治疗方式的失败在这种癌症的先进阶段和已经可用的MTOR抑制剂对新型药物候选者的需求的缺点。在本研究中,我们鉴定了在链霉菌SP OA293的乙酸乙酯提取物的活动分数中存在MTOR抑制剂的存在。活性级分中的代谢物完全抑制MTORC1,从而抑制了其下游靶标,4E-BP1和P70S6K的激活,宫颈癌细胞。此外,它还通过MTORC2的抑制而停止AKT激活。在我们研究中详述的MTOR抑制机制克服了众所周知的MTOR抑制剂如雷帕霉素和rapalogs的显着缺点。活性级分诱导的自噬和BAX介导的细胞凋亡,表明MTOR抑制导致癌细胞的编程细胞死亡。活性分数中组分的分子量测定证实不存在任何先前已知的天然mTOR抑制剂。这是由源自微生物来源的产品完全MTOR复杂抑制的第一报告。

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