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首页> 外文期刊>BMC Cancer >Natural product derivative Gossypolone inhibits Musashi family of RNA-binding proteins
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Natural product derivative Gossypolone inhibits Musashi family of RNA-binding proteins

机译:天然产物衍生物Gossypolone抑制usashi系列RNA结合蛋白

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The Musashi (MSI) family of RNA-binding proteins is best known for the role in post-transcriptional regulation of target mRNAs. Elevated MSI1 levels in a variety of human cancer are associated with up-regulation of Notch/Wnt signaling. MSI1 binds to and negatively regulates translation of Numb and APC (adenomatous polyposis coli), negative regulators of Notch and Wnt signaling respectively. Previously, we have shown that the natural product (-)-gossypol as the first known small molecule inhibitor of MSI1 that down-regulates Notch/Wnt signaling and inhibits tumor xenograft growth in vivo. Using a fluorescence polarization (FP) competition assay, we identified gossypolone (Gn) with a??20-fold increase in Ki value compared to (-)-gossypol. We validated Gn binding to MSI1 using surface plasmon resonance, nuclear magnetic resonance, and cellular thermal shift assay, and tested the effects of Gn on colon cancer cells and colon cancer DLD-1 xenografts in nude mice. In colon cancer cells, Gn reduced Notch/Wnt signaling and induced apoptosis. Compared to (-)-gossypol, the same concentration of Gn is less active in all the cell assays tested. To increase Gn bioavailability, we used PEGylated liposomes in our in vivo studies. Gn-lip via tail vein injection inhibited the growth of human colon cancer DLD-1 xenografts in nude mice, as compared to the untreated control (P??0.01, n?=?10). Our data suggest that PEGylation improved the bioavailability of Gn as well as achieved tumor-targeted delivery and controlled release of Gn, which enhanced its overall biocompatibility and drug efficacy in vivo. This provides proof of concept for the development of Gn-lip as a molecular therapy for colon cancer with MSI1/MSI2 overexpression.
机译:Musashi(MSI)RNA结合蛋白的家族是最为罕见的,用于靶MRNA的转录后调节中的作用。各种人类癌症中的MSI1水平升高与NOTCH / WNT信号传导的上调。 MSI1结合并负调节NUMB和APC(腺瘤性息肉菌肤COLI)的翻译,分别为凹口和WNT信号传导的负调节剂。以前,我们已经表明,天然产物( - ) - 甘蓝型作为MSI1的第一种已知的小分子抑制剂,下调凹口/ WNT信号传导并抑制体内肿瘤异种移植生长。使用荧光极化(FP)竞争测定,我们鉴定了与( - ) - 八曲面相比ki值增加了α> 20倍的α> 20倍。我们使用表面等离子体共振,核磁共振和细胞热移测定验证了GN与MSI1的结合,并测试了GN对裸鼠结肠癌细胞和结肠癌DLD-1异种移植物的影响。在结肠癌细胞中,GN减少了Notch / Wnt信号传导和诱导的细胞凋亡。与( - ) - 棉酚相比,在测试的所有细胞测定中,相同的GN浓度较小。为了增加GN生物利用度,我们在我们的体内研究中使用了Pegymated脂质体。与未处理的对照相比,通过尾静脉注射抑制裸鼠中人结肠癌DLD-1异种移植物的生长(p?<〜0.01,n?= 10)。我们的数据表明,PEG化改善了GN的生物利用度以及达到GN的肿瘤靶向递送和控制释放,这提高了其在体内的整体生物相容性和药物功效。这提供了概念证据,用于将GN-唇作为与MSI1 / MSI2过表达的结肠癌的分子治疗。

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