Ali Saira R, Humphreys Karen J, Simpson Kaylene J, McKinnon Ross A, Meech Robyn, Michael Michael Z
Flinders Health and Medical Research Institute - Cancer Program, Flinders University, Flinders Medical Centre, Bedford Park, SA 5042, Australia.
Victorian Centre for Functional Genomics, Peter MacCallum Cancer Centre, Melbourne, VIC 3000, Australia.
Mol Ther Nucleic Acids. 2022 Aug 29;30:30-47. doi: 10.1016/j.omtn.2022.08.037. eCollection 2022 Dec 13.
The gut fermentation product butyrate displays anti-cancer properties in the human proximal colon, including the ability to inhibit proliferation and induce apoptosis in colorectal cancer (CRC) cells. A natural histone deacetylase inhibitor (HDACi), butyrate can alter histone acetylation patterns in CRC cells, and thereby regulate global gene expression, including the non-coding transcriptome and microRNAs (miRNAs). Dysregulated miRNA expression affects CRC development and progression; however, the interplay between miRNA activity and butyrate response remains to be elucidated. A high-throughput functional screen was employed to identify miRNAs that can act as enhancers of the anti-cancer properties of butyrate. Validation studies confirmed that several miRNAs, including miR-125b, miR-181a, miR-593, and miR-1227, enhanced apoptosis, decreased proliferation, and promoted cell-cycle arrest in the presence of butyrate. Pathway analyses of predicted miRNA target genes highlighted their likely involvement in critical cancer-related growth pathways, including WNT and PI3K signaling. Several cancer-associated miRNA targets, including , , , , , , , and were synergistically regulated by the combination of cognate miRNAs and butyrate. Overall, this study has exposed the potential of miRNAs to act as enhancers of the anti-cancer effects of HDAC inhibition and identifies specific miRNAs that might be exploited for therapeutic benefit.
肠道发酵产物丁酸在人类近端结肠中具有抗癌特性,包括抑制结肠直肠癌(CRC)细胞增殖和诱导其凋亡的能力。作为一种天然的组蛋白去乙酰化酶抑制剂(HDACi),丁酸可改变CRC细胞中的组蛋白乙酰化模式,从而调节整体基因表达,包括非编码转录组和微小RNA(miRNA)。miRNA表达失调会影响CRC的发生和发展;然而,miRNA活性与丁酸反应之间的相互作用仍有待阐明。采用高通量功能筛选来鉴定可作为丁酸抗癌特性增强剂的miRNA。验证研究证实,包括miR-125b、miR-181a、miR-593和miR-1227在内的几种miRNA在丁酸存在的情况下增强了细胞凋亡、降低了细胞增殖并促进了细胞周期停滞。对预测的miRNA靶基因进行的通路分析突出了它们可能参与关键的癌症相关生长通路,包括WNT和PI3K信号传导。几种与癌症相关的miRNA靶标,包括……(此处原文缺失具体基因名称),通过同源miRNA和丁酸的组合受到协同调节。总体而言,本研究揭示了miRNA作为HDAC抑制抗癌作用增强剂的潜力,并鉴定出了可能用于治疗益处的特定miRNA。