DUSP5P1 promotes gastric cancer metastasis and platinum drug resistance.

IF 5.9 2区 医学 Q1 ONCOLOGY
Xiaohong Wang, Lianhai Zhang, Qiaoyi Liang, Chi Chun Wong, Huarong Chen, Hongyan Gou, Yujuan Dong, Weixin Liu, Ziyu Li, Jiafu Ji, Jun Yu
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引用次数: 3

Abstract

We elucidated the functional significance and molecular mechanisms of DUSP5P1 lncRNA (dual specificity phosphatase 5 pseudogene 1) in gastric carcinogenesis. We demonstrated that gastric cancer (GC) patients with high DUSP5P1 expression had shortened survival in two independent cohorts. DUSP5P1 promoted GC cell migration and invasion in vitro and metastasis in vivo. Mechanistically, DUSP5P1 activated ARHGAP5 transcription by directly binding to the promoter of ARHGAP5 with a binding motif of TATGTG. RNA-seq revealed that ARHGAP5 activated focal adhesion and MAPK signaling pathways to promote GC metastasis. DUSP5P1 also dysregulated platinum drug resistance pathway. Consistently, DUSP5P1 overexpression in GC cells antagonized cytotoxic effect of Oxaliplatin, and shDUSP5P1 plus Oxaliplatin exerted synergistic effect on inhibiting GC metastasis in vitro and in vivo. DUSP5P1 depletion also suppressed the growth of platinum drug-resistant PDO models. In conclusion, DUSP5P1 promoted GC metastasis by directly modulating ARHGAP5 expression to activate focal adhesion and MAPK pathways, serves as therapeutic target for platinum drug resistant GC, and is an independent prognostic factor in GC.

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Abstract Image

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DUSP5P1促进胃癌转移和铂类药物耐药。
我们阐明了DUSP5P1 lncRNA(双特异性磷酸酶5假基因1)在胃癌发生中的功能意义和分子机制。我们在两个独立的队列中证明了高DUSP5P1表达的胃癌(GC)患者的生存期缩短。DUSP5P1促进GC细胞在体外的迁移侵袭和体内的转移。机制上,DUSP5P1通过TATGTG结合基序直接结合ARHGAP5的启动子,激活ARHGAP5的转录。RNA-seq结果显示,ARHGAP5激活局灶黏附和MAPK信号通路,促进胃癌转移。DUSP5P1也会调控铂类药物耐药通路。在GC细胞中,DUSP5P1的过表达一致地拮抗奥沙利铂的细胞毒作用,shDUSP5P1与奥沙利铂在体外和体内均具有协同抑制GC转移的作用。DUSP5P1缺失也抑制了铂耐药PDO模型的生长。综上所述,DUSP5P1通过直接调节ARHGAP5表达激活局灶黏附和MAPK通路促进胃癌转移,是铂类耐药胃癌的治疗靶点,是胃癌的独立预后因素。
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来源期刊
Oncogenesis
Oncogenesis ONCOLOGY-
CiteScore
11.90
自引率
0.00%
发文量
70
审稿时长
26 weeks
期刊介绍: Oncogenesis is a peer-reviewed open access online journal that publishes full-length papers, reviews, and short communications exploring the molecular basis of cancer and related phenomena. It seeks to promote diverse and integrated areas of molecular biology, cell biology, oncology, and genetics.
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