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miR-192/miR-215 通过与转录后胸苷酸合酶调控互补的细胞周期介导机制影响 5-氟尿嘧啶耐药性。

miR-192/miR-215 influence 5-fluorouracil resistance through cell cycle-mediated mechanisms complementary to its post-transcriptional thymidilate synthase regulation.

机构信息

Oncology Unit, Casa Sollievo Sofferenza, S. Giovanni Rotondo, Italy.

出版信息

Mol Cancer Ther. 2010 Aug;9(8):2265-75. doi: 10.1158/1535-7163.MCT-10-0061. Epub 2010 Jul 20.

DOI:10.1158/1535-7163.MCT-10-0061
PMID:20647341
Abstract

Thymidylate synthase (TYMS) is a target of the most widely used chemotherapeutic agents against gastrointestinal malignancies, the fluoropyrimidine-based therapy. TYMS expression levels have been identified as predictive biomarkers for 5-fluoruracil (FU) response in colorectal cancer, but their clinical utility remains controversial. The complexity of fluoropyrimidine response must require more mechanisms that currently have not been completely elucidated. In this context, microRNAs (miRNA) may play a role in modulating chemosensitivity. By carrying out an in silico analysis coupled to experimental validation, we detected that miR-192 and miR-215 target TYMS expression in colorectal cancer cell lines. However, downregulation of TYMS by these miRNAs does not sensitize colorectal cancer cell lines to FU treatment. The overexpression of miR-192/215 significantly reduces cell proliferation by targeting cell cycle progression. This effect was partially associated with p53 status, because reduction of cell proliferation and cell cycle arrest was associated with p21 and p27 induction. The decrease of S-phase cells by these miRNAs mitigates the effects of S phase-specific drugs and suggests that other mechanisms different from TYMS overexpression are essential to direct FU resistance. Finally, ectopic expression of miR-192/215 might have stronger impact to predict FU response than TYMS inhibition. Prospective studies to elucidate the role of these miRNAs as predictive biomarkers to FU are necessary.

摘要

胸苷酸合成酶(TYMS)是胃肠道恶性肿瘤最广泛使用的化疗药物-氟嘧啶类药物的靶点。TYMS 表达水平已被确定为结直肠癌 5-氟尿嘧啶(FU)反应的预测生物标志物,但它们的临床实用性仍存在争议。氟嘧啶类药物反应的复杂性肯定需要更多目前尚未完全阐明的机制。在这种情况下,microRNAs(miRNA)可能在调节化疗敏感性方面发挥作用。通过进行计算机分析并结合实验验证,我们在结直肠癌细胞系中检测到 miR-192 和 miR-215 靶向 TYMS 表达。然而,这些 miRNA 下调 TYMS 并不能使结直肠癌细胞系对 FU 治疗敏感。miR-192/215 的过表达通过靶向细胞周期进程显著降低细胞增殖。这种效应部分与 p53 状态相关,因为细胞增殖减少和细胞周期阻滞与 p21 和 p27 的诱导相关。这些 miRNA 减少 S 期细胞减轻了 S 期特异性药物的作用,并表明除了 TYMS 过表达外,其他机制对于直接抵抗 FU 至关重要。最后,miR-192/215 的异位表达可能比 TYMS 抑制更能预测 FU 反应。阐明这些 miRNA 作为 FU 预测生物标志物的作用的前瞻性研究是必要的。

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