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首页> 外文期刊>The Journal of biological chemistry >DNA Methylation-regulated miR-193a-3p Dictates Resistance of Hepatocellular Carcinoma to 5-Fluorouracil via Repression of SRSF2 Expression
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DNA Methylation-regulated miR-193a-3p Dictates Resistance of Hepatocellular Carcinoma to 5-Fluorouracil via Repression of SRSF2 Expression

机译:DNA甲基化调节的miR-193a-3p通过抑制SRSF2表达决定肝细胞癌至5-氟尿嘧啶的抗性

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Chemoresistance prevents effective cancer therapy and is rarely predictable prior to treatment, particularly for hepatocellular carcinoma (HCC). Following the chemoresistance profiling of eight HCC cell lines to each of nine chemotherapeutics, two cell lines (QGY-7703 as a sensitive and SMMC-7721 as a resistant cell line to 5-fluorouracil (5-FU) treatment) were systematically studied for mechanistic insights underpinning HCC 5-FU chemoresistance. Genomic profiling at both DNA methylation and microRNA (miR) levels and subsequent mechanistic studies illustrate a new mechanism for how DNA methylation-regulated miR-193a-3p dictates the 5-FU resistance of HCC cells via repression of serine/arginine-rich splicing factor 2 (SRSF2) expression. In turn, SRSF2 preferentially up-regulates the proapoptotic splicing form of caspase 2 (CASP2L) and sensitizes HCC cells to 5-FU. Forced changes of miR-193a-3p level reverse all of the phenotypic features examined, including cell proliferation, cell cycle progression, and 5-FU sensitivity, in cell culture and in nude mice. Importantly, the siRNA-mediated repression of SRSF2 phenocopies all of the miR-193a-3p mimic-triggered changes in QGY-7703. This newly identified miR-193a-3p-SRSF2 axis highlights a new set of companion diagnostics required for optimal 5-FU therapy of HCC, which involve assaying both the DNA methylation state of the miR-193a gene and the expression of miR-193a-3p and SRSF2 and the relative level of the proapoptotic versus antiapoptotic splicing forms of caspase 2 in clinical samples.
机译:ChemoTatisistance可防止有效的癌症治疗,并且在治疗之前很少可预测,特别是对于肝细胞癌(HCC)。在九个化学治疗剂中的每条中的八个HCC细胞系中的化学抑制性分析中,系统地研究了两种细胞系(作为敏感的细胞系为抗性细胞系(5-Fulouracil(5-Fu)处理)的细胞系(QGy-7703)洞察洞中的HCC 5-FU Chemiolatyisce。 DNA甲基化和MicroRNA(miR)水平和随后的机械研究中的基因组分析说明了DNA甲基化调节的miR-193a-3p如何通过抑制丝氨酸/精氨酸的剪接因子决定HCC细胞的5-FU抗性的新机制2(SRSF2)表达式。反过来,SRSF2优先上调Caspase 2(Casp2L)的凋亡拼接形式,并使HCC电池敏感到5-FU。 miR-193a-3p水平的强制变化逆转所检查的所有表型特征,包括细胞增殖,细胞周期进展和5-fu敏感性,细胞培养和裸鼠。重要的是,SRNA-193A-3P所有MIR-193A-3P的SRSF2衰弱的抑制的siRNA介导的抑制在QGY-7703中触发的变化。该新发现的MIR-193A-3P-SRSF2轴突出了HCC最佳5-FU治疗所需的一组新的伴随诊断,这涉及测定miR-193a基因的DNA甲基化状态和miR-193a的表达3P和SRSF2以及临床样品中Caspase 2的促滤波与抗曝光抗菌剪接形式的相对水平。

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