4.7 Article

The miR-361-3p increases enzalutamide (Enz) sensitivity via targeting the ARv7 and MKNK2 to better suppress the Enz-resistant prostate cancer

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CELL DEATH & DISEASE
卷 11, 期 9, 页码 -

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SPRINGERNATURE
DOI: 10.1038/s41419-020-02932-w

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资金

  1. NIH [CA155477]
  2. Six Talent Peak Project of High-level Talents in Jiangsu Province [WSW-017]
  3. 333 High-level Talents Training Project in Jiangsu Province
  4. George Whipple Professorship
  5. Professional from Six-Pronged Top-Talent Program [LGY2018053]
  6. Qing Lan Project of Jiangsu University [JX2161015100]
  7. Fifth Batch of Outstanding Young and Middle-aged Teachers' Support Program of Nanjing Medical University
  8. Priority Academic Program Development of Jiangsu Higher Education Institutions [JX10231802]

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The androgen receptor splicing variant 7 (ARv7) that lacks the ligand-binding domain is increasingly considered as a key player leading to enzalutamide (Enz) resistance in patients with prostate cancer (PCa). However, the detailed mechanisms of how ARv7 expression is regulated and whether it also needs other factors to induce maximal Enz resistance remain unclear. Here, we identified a microRNA, miR-361-3p, whose expression is lower in patients with recurrent PCa, could function via binding to the 3 ' UTR of ARv7, but not the wild type of AR, to suppress its expression to increase the Enz sensitivity. Importantly, we found that miR-361-3p could also bind to the 3 ' UTR of MAP kinase-interacting serine/threonine kinase 2 (MKNK2) to suppress its expression to further increase the Enz sensitivity. In turn, the increased Enz can then function via a feedback mechanism through altering the HIF-2 alpha/VEGFA signaling to suppress the expression of miR-361-3p under hypoxia conditions. Preclinical studies using an in vivo mouse model with orthotopically xenografted CWR22Rv1 cells demonstrated that combining the Enz with the small molecule miR-361-3p would result in better suppression of the Enz-resistant PCa tumor progression. Together, these preclinical studies demonstrate that miR-361-3p can function via suppressing the expression of ARv7 and MKNK2 to maximally increase the Enz sensitivity, and targeting these newly identified Enz/miR-361-3p/ARv7 and/or Enz/miR-361-3p/MKNK2 signals with small molecules may help in the development of novel therapies to better suppress the CRPC in patients that already have developed the Enz resistance.

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