Literature DB >> 30322877

Regulation of eIF4F Translation Initiation Complex by the Peptidyl Prolyl Isomerase FKBP7 in Taxane-resistant Prostate Cancer.

Marine F Garrido1,2,3, Nicolas J-P Martin1,2,3, Matthieu Bertrand1,2,3, Catherine Gaudin1,2,3, Frédéric Commo1,2,3, Nassif El Kalaany1,2,3, Nader Al Nakouzi4, Ladan Fazli4, Elaine Del Nery5,6, Jacques Camonis5,6,7, Franck Perez5,6,8, Stéphanie Lerondel9, Alain Le Pape9, Daniel Compagno10, Martin Gleave4, Yohann Loriot1,2,3, Laurent Désaubry11, Stéphan Vagner5,12, Karim Fizazi1,2,3, Anne Chauchereau13,2,3.   

Abstract

PURPOSE: Targeted therapies that use the signaling pathways involved in prostate cancer are required to overcome chemoresistance and improve treatment outcomes for men. Molecular chaperones play a key role in the regulation of protein homeostasis and are potential targets for overcoming chemoresistance.Experimental Design: We established 4 chemoresistant prostate cancer cell lines and used image-based high-content siRNA functional screening, based on gene-expression signature, to explore mechanisms of chemoresistance and identify new potential targets with potential roles in taxane resistance. The functional role of a new target was assessed by in vitro and in vivo silencing, and mass spectrometry analysis was used to identify its downstream effectors.
RESULTS: We identified FKBP7, a prolyl-peptidyl isomerase overexpressed in docetaxel-resistant and in cabazitaxel-resistant prostate cancer cells. This is the first study to characterize the function of human FKBP7 and explore its role in cancer. We discovered that FKBP7 was upregulated in human prostate cancers and its expression correlated with the recurrence observed in patients receiving docetaxel. FKBP7 silencing showed that FKBP7 is required to maintain the growth of chemoresistant cell lines and chemoresistant tumors in mice. Mass spectrometry analysis revealed that FKBP7 interacts with eIF4G, a component of the eIF4F translation initiation complex, to mediate the survival of chemoresistant cells. Using small-molecule inhibitors of eIF4A, the RNA helicase component of eIF4F, we were able to kill docetaxel- and cabazitaxel-resistant cells.
CONCLUSIONS: Targeting FKBP7 or the eIF4G-containing eIF4F translation initiation complex could be novel therapeutic strategies to eradicate taxane-resistant prostate cancer cells. ©2018 American Association for Cancer Research.

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Year:  2018        PMID: 30322877     DOI: 10.1158/1078-0432.CCR-18-0704

Source DB:  PubMed          Journal:  Clin Cancer Res        ISSN: 1078-0432            Impact factor:   12.531


  3 in total

1.  Resistance Mechanisms to Taxanes and PARP Inhibitors in Advanced Prostate Cancer.

Authors:  Alan P Lombard; Allen C Gao
Journal:  Curr Opin Endocr Metab Res       Date:  2020-02-19

2.  MicroRNA-5195-3p enhances the chemosensitivity of triple-negative breast cancer to paclitaxel by downregulating EIF4A2.

Authors:  Mei Liu; Can Gong; Renyuan Xu; Yu Chen; Xiaodong Wang
Journal:  Cell Mol Biol Lett       Date:  2019-07-01       Impact factor: 5.787

3.  Combining inhibition of galectin-3 with and before a therapeutic vaccination is critical for the prostate-tumor-free outcome.

Authors:  Carolina Tiraboschi; Lucas Gentilini; Carla Velazquez; Enrique Corapi; Felipe Martín Jaworski; José Daniel Garcia Garcia; Yorfer Rondón; Anne Chauchereau; Diego José Laderach; Daniel Compagno
Journal:  J Immunother Cancer       Date:  2020-12       Impact factor: 13.751

  3 in total

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