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Identification of the endosomal sorting complex required for transport-I (ESCRT-I) as an important modulator of anti-miR uptake by cancer cells

机译:鉴定转运I(ESCRT-I)作为癌细胞抗miR摄取的重要调节剂所需的内体分选复合物

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Mechanisms of unassisted delivery of RNA therapeutics, including inhibitors of microRNAs, remain poorly understood. We observed that the hepatocellular carcinoma cell line SKHEP1 retains productive free uptake of a miR-21 inhibitor (anti-miR-21). Uptake of anti-miR-21, but not a mismatch MM) control, induces expression of known miR-21 targets (DDAH1, ANKRD46) and leads to dose-dependent inhibition of cell growth. To elucidate mechanisms of SKHEP1 sensitivity to anti-miR-21, we conducted an unbiased shRNA screen that revealed tumor susceptibility gene 101 (TSG101), a component of the endosomal sorting complex required for transport (ESCRT-I), as an important determinant of anti-proliferative effects of anti-miR-21. RNA interference-mediated knockdown of TSG101 and another ESCRT-I protein, VPS28, improved uptake of anti-miR-21 in parental SKHEP1 cells and restored productive uptake to SKHEP1 clones with acquired resistance to anti-miR-21. Depletion of ESCRT-I in several additional cancer cell lines with inherently poor uptake resulted in improved activity of anti-miR-21. Finally, knockdown of TSG101 increased uptake of anti-miR-21 by cancer cells in vivo following systemic delivery. Collectively, these data support an important role for the ESCRT-I complex in the regulation of productive free uptake of anti-miRs and reveal potential avenues for improving oligonucleotide free uptake by cancer cells.
机译:包括microRNA抑制剂在内的RNA治疗药物的无辅助递送机制仍然知之甚少。我们观察到肝细胞癌细胞系SKHEP1保留了miR-21抑制剂(抗miR-21)的生产性自由摄取。摄取抗miR-21(而不是错配的MM)对照会诱导已知miR-21靶标(DDAH1,ANKRD46)的表达,并导致剂量依赖性抑制细胞生长。为了阐明SKHEP1对抗miR-21的敏感性的机制,我们进行了无偏见的shRNA筛选,揭示了肿瘤易感性基因101(TSG101),这是运输所需的内体分选复合物(ESCRT-I)的一个重要决定因素。 miR-21的抗增殖作用。 TSG101和另一种ESCRT-1蛋白VPS28的RNA干扰介导的敲低提高了亲代SKHEP1细胞对抗miR-21的吸收,并恢复了对SKHEP1克隆的生产性吸收,并获得了对抗miR-21的抗性。内在吸收较差的几种其他癌细胞系中ESCRT-1的消耗导致抗miR-21活性的提高。最后,敲除TSG101会增加全身递送后体内癌细胞对抗miR-21的吸收。总的来说,这些数据支持ESCRT-1复合物在调节抗miRs的生产性自由摄取中的重要作用,并揭示了改善癌细胞对寡核苷酸自由摄取的潜在途径。

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