4.8 Article

PRCC-TFE3 fusion-mediated PRKN/parkin-dependent mitophagy promotes cell survival and proliferation in PRCC-TFE3 translocation renal cell carcinoma

Journal

AUTOPHAGY
Volume 17, Issue 9, Pages 2475-2493

Publisher

TAYLOR & FRANCIS INC
DOI: 10.1080/15548627.2020.1831815

Keywords

Apoptosis; mitophagy; PRCC-TFE3; PRKN; proliferation

Categories

Funding

  1. National Natural Science Foundation of China [81572512]
  2. Nanjing Sci-Tech Development Project [201803025]
  3. Beijing Ronghe Medical Development Foundation
  4. State Key Laboratory of Analytical Chemistry for Life Science [5431ZZXM2004]

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The study revealed that PRCC-TFE3 fusion protein activates specific genes leading to rapid mitophagy, promoting cell survival and proliferation, as well as accelerating mitochondrial turnover. However, nuclear translocation of TFE3 fusions escapes from this process.
TFE3 (transcription factor binding to IGHM enhancer 3) nuclear translocation and transcriptional activity has been implicated in PINK1-PRKN/parkin-dependent mitophagy. However, the transcriptional control governing the mitophagy in TFE3/Xp11.2 translocation renal cell carcinoma (TFE3 tRCC) is largely unknown. Here, we investigated the role and mechanisms of PRCC-TFE3 fusion protein, one of TFE3 fusion types in TFE3 tRCC, in governing mitophagy to promote development of PRCC-TFE3 tRCC. We observed and analyzed mitophagy, transcriptional control of PRCC-TFE3 on PINK1-PRKN-dependent mitophagy, PRCC-TFE3 fusions nuclear translocation, cancer cell survival and proliferation under mitochondrial oxidative damage in PRCC-TFE3 tRCC cell line. We found that nuclear-aggregated PRCC-TFE3 fusions constitutively activated expression of the target gene E3 ubiquitin ligase PRKN, leading to rapid PINK1-PRKN-dependent mitophagy that promoted cell survival under mitochondrial oxidative damage as well as cell proliferation through decreasing mitochondrial ROS formation. However, nuclear translocation of TFE3 fusions escaped from PINK1-PRKN-dependent mitophagy. Furthermore, we confirmed that PRCC-TFE3 fusion accelerated mitochondrial turnover by activating PPARGC1A/PGC1 alpha-NRF1. In conclusion, our findings indicated a major role of PRCC-TFE3 fusion-mediated mitophagy and mitochondrial biogenesis in promoting proliferation of PRCC-TFE3 tRCC.

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