PO.ET03.04 · 实验与分子治疗

METTL7B 驱动的 m6A RNA 甲基化促进胰腺导管腺癌的吉西他滨耐药和肿瘤进展

METTL7B-driven m6A RNA methylation promotes gemcitabine resistance and tumor progression in pancreatic ductal adenocarcinoma

海报缩略图:METTL7B 驱动的 m6A RNA 甲基化促进胰腺导管腺癌的吉西他滨耐药和肿瘤进展
编号 3121 展板 21 时间 4/20 02:00–05:00 区域 Section 17 主讲 Tung-Wei Hsu, BS;MS;PhD
分会场 Overcoming Chemotherapy Resistance
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作者与单位 Authors & Affiliations

Tung-Wei Hsu1, Wan-Yu Wang1, Yen-Hao Su1, Chih-Ming Su1, Po-Chen Tseng2, Hsin-An Chen1

1Department of Surgery, Division of General Surgery, Taipei Medical University-Shuang Ho Hospital, Ministry of Health and Welfare, New Taipei City, Taiwan,2Department of Ophthalmology, Taipei City Hospital, Renai Branch, Taipei, Taiwan

摘要 Abstract

中文摘要
胰腺导管腺癌(PDAC)仍是最致命的恶性肿瘤之一,五年生存率低于 12%,主要由于化疗耐药的快速形成。为鉴定耐药的分子驱动因素,我们对吉西他滨耐药的 PANC-1 GR 细胞进行了整合的转录组学、蛋白质组学和甲基化分析。我们鉴定出甲基转移酶样蛋白 METTL7B 是 PDAC 中 RNA 甲基化介导耐药的一种新型调节因子。全局 m6A 图谱分析揭示耐药细胞中的高甲基化,且与 METTL7B 表达升高相关。对 TCGA 和 UALCAN 数据集的分析证实了 METTL7B 在 PDAC 组织中上调,尤其是在 KRAS 突变肿瘤中,并与总生存和无病生存较差相关。功能实验表明,METTL7B 敲低抑制了增殖、迁移、侵袭和集落形成,同时恢复了吉西他滨敏感性。机制上,m6A-seq 和 RNA-seq 分析揭示 METTL7B 甲基化 CSF2、CDKN1A 和 FoxM1 等致癌转录本,增强其 mRNA 稳定性和翻译,以促进细胞周期进程和应激适应。网络和通路分析进一步将 METTL7B 活性与 KRAS 和 STAT3 信号激活联系起来,提示其在 PDAC 侵袭性中的作用。总之,这些结果确定 METTL7B 是通过 m6A 依赖性稳定致癌 mRNA 和激活促存活通路而介导吉西他滨耐药的关键表观转录组调节因子。靶向 METTL7B 介导的 RNA 甲基化为克服化疗耐药和改善 PDAC 临床结局提供了一种有前景的治疗策略。
查看英文原文 English abstract
Pancreatic ductal adenocarcinoma (PDAC) remains one of the most lethal malignancies, with a five-year survival rate below 12%, primarily due to rapid development of chemoresistance. To identify molecular drivers of drug resistance, we performed integrated transcriptomic, proteomic, and methylation analyses on gemcitabine-resistant PANC-1 GR cells. We identified the methyltransferase-like protein METTL7B as a novel regulator of RNA methylation-mediated resistance in PDAC. Global m6A profiling revealed hypermethylation in resistant cells that correlated with elevated METTL7B expression. Analysis of TCGA and UALCAN datasets confirmed METTL7B upregulation in PDAC tissues, particularly in KRAS-mutant tumors, and its association with poor overall and disease-free survival. Functional assays demonstrated that METTL7B knockdown suppressed proliferation, migration, invasion, and colony formation while restoring gemcitabine sensitivity. Mechanistically, m6A-seq and RNA-seq analyses revealed that METTL7B methylates oncogenic transcripts such as CSF2, CDKN1A, and FoxM1, enhancing their mRNA stability and translation to promote cell-cycle progression and stress adaptation. Network and pathway analyses further linked METTL7B activity to activation of KRAS and STAT3 signaling, indicating its role in PDAC aggressiveness. Collectively, these results identify METTL7B as a key epitranscriptomic regulator of gemcitabine resistance through m6A-dependent stabilization of oncogenic mRNAs and activation of pro-survival pathways. Targeting METTL7B-mediated RNA methylation offers a promising therapeutic strategy to overcome chemoresistance and improve clinical outcomes in PDAC.
利益披露 Disclosure
T. Hsu, None.. W. Wang, None.. Y. Su, None.. C. Su, None.. P. Tseng, None.. H. Chen, None.

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