Literature DB >> 36088503

Transgenic construction and functional miRNA analysis identify the role of miR-7 in prostate cancer suppression.

Can Wang1,2, Wenchao Li1,2, Qiang Hu1,2, Ninghan Feng3, Chunhui Liu1,2, Naipeng Shi1,2, Shuqiu Chen1,2, Ming Chen4,5, Han Guan6, Zonghao You7,8, Bin Xu9,10,11.   

Abstract

Although miR-7 suppresses the initiation and progression in cancers, little is known about its role in prostate cancer, especially in transgenic mouse models. In present study, we found that expression of miR-7, regulated by p53, was lower in prostate cancer tissues, and miR-7 overexpression significantly mitigated prostate cancer cells growth both in vitro, in organoids and in vivo regardless of p53 status. After we generated miR-7 overexpression transgenic mice and miR-7+/TRAMP mice, we found that transgenic overexpression of miR-7 in mice is safe and miR-7+/TRAMP mice have a preferred overall survival. Moreover, in vivo treatment of miR-7 inhibited subcutaneous tumour growth in mice and prolonged the survival of mice harboring prostate cancer lung metastasis when co-injection with PD-1 antibody. In addition, miR-7 downregulated glycolysis of prostate cancer cells by inhibiting several key pathways including HIF-1α, and subsequently remodeled acidic tumour microenvironment, PanKLa level and T cell infiltration. In summary, our findings highlighted a promising target for development of miRNA-based therapeutics for prostate cancer patients regardless of p53 status.
© 2022. The Author(s), under exclusive licence to Springer Nature Limited.

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Year:  2022        PMID: 36088503     DOI: 10.1038/s41388-022-02461-0

Source DB:  PubMed          Journal:  Oncogene        ISSN: 0950-9232            Impact factor:   8.756


  40 in total

1.  PKM2 regulates angiogenesis of VR-EPCs through modulating glycolysis, mitochondrial fission, and fusion.

Authors:  Ranyue Ren; Jiachao Guo; Jia Shi; Yong Tian; Mengwei Li; Hao Kang
Journal:  J Cell Physiol       Date:  2020-02-03       Impact factor: 6.384

2.  Processing of primary microRNAs by the Microprocessor complex.

Authors:  Ahmet M Denli; Bastiaan B J Tops; Ronald H A Plasterk; René F Ketting; Gregory J Hannon
Journal:  Nature       Date:  2004-11-07       Impact factor: 49.962

3.  Overcoming resistance to immune checkpoint therapy in PTEN-null prostate cancer by intermittent anti-PI3Kα/β/δ treatment.

Authors:  Zhi Qi; Zihan Xu; Liuzhen Zhang; Yongkang Zou; Jinping Li; Wenyu Yan; Cheng Li; Ningshu Liu; Hong Wu
Journal:  Nat Commun       Date:  2022-01-10       Impact factor: 17.694

4.  MicroRNA-7 targets T-Box 2 to inhibit epithelial-mesenchymal transition and invasiveness in glioblastoma multiforme.

Authors:  Chih-Ming Pan; Kai-Hsiang Chan; Chao-Hsuan Chen; Chia-Ing Jan; Ming-Chao Liu; Chien-Min Lin; Der-Yang Cho; Wan-Chen Tsai; Yen-Tse Chu; Cheng-Hsin Cheng; Hao-Yu Chuang; Shao-Chih Chiu
Journal:  Cancer Lett       Date:  2020-08-27       Impact factor: 8.679

Review 5.  Recent Global Patterns in Prostate Cancer Incidence and Mortality Rates.

Authors:  MaryBeth B Culp; Isabelle Soerjomataram; Jason A Efstathiou; Freddie Bray; Ahmedin Jemal
Journal:  Eur Urol       Date:  2019-09-05       Impact factor: 20.096

6.  LSD1 activates a lethal prostate cancer gene network independently of its demethylase function.

Authors:  Archana Sehrawat; Lina Gao; Yuliang Wang; Armand Bankhead; Shannon K McWeeney; Carly J King; Jacob Schwartzman; Joshua Urrutia; William H Bisson; Daniel J Coleman; Sunil K Joshi; Dae-Hwan Kim; David A Sampson; Sheila Weinmann; Bhaskar V S Kallakury; Deborah L Berry; Reina Haque; Stephen K Van Den Eeden; Sunil Sharma; Jared Bearss; Tomasz M Beer; George V Thomas; Laura M Heiser; Joshi J Alumkal
Journal:  Proc Natl Acad Sci U S A       Date:  2018-03-26       Impact factor: 11.205

7.  Downregulation of circular RNA hsa_circ_0000735 boosts prostate cancer sensitivity to docetaxel via sponging miR-7.

Authors:  Yisheng Gao; Jie Liu; Jing Huan; Fengyuan Che
Journal:  Cancer Cell Int       Date:  2020-07-22       Impact factor: 5.722

8.  Interactome analysis reveals that lncRNA HULC promotes aerobic glycolysis through LDHA and PKM2.

Authors:  Chunqing Wang; Yongmei Li; Shuai Yan; Hao Wang; Xianfeng Shao; Mingming Xiao; Baicai Yang; Guoxuan Qin; Ruirui Kong; Ruibing Chen; Ning Zhang
Journal:  Nat Commun       Date:  2020-06-22       Impact factor: 14.919

9.  N6-methyladenosine regulates glycolysis of cancer cells through PDK4.

Authors:  Zihan Li; Yanxi Peng; Jiexin Li; Zhuojia Chen; Feng Chen; Jian Tu; Shuibin Lin; Hongsheng Wang
Journal:  Nat Commun       Date:  2020-05-22       Impact factor: 14.919

10.  Transcriptional Suppression of miR-7 by MTA2 Induces Sp1-Mediated KLK10 Expression and Metastasis of Cervical Cancer.

Authors:  Chia-Liang Lin; Tsung-Ho Ying; Shun-Fa Yang; Shih-Wei Wang; Shih-Ping Cheng; Jie-Jen Lee; Yi-Hsien Hsieh
Journal:  Mol Ther Nucleic Acids       Date:  2020-04-28       Impact factor: 8.886

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