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NEK6 Regulates Redox Balance and DNA Damage Response in DU-145 Prostate Cancer Cells.

Authors :
Pavan, Isadora Carolina Betim
Basei, Fernanda Luisa
Severino, Matheus Brandemarte
Rosa e Silva, Ivan
Issayama, Luidy Kazuo
Mancini, Mariana Camargo Silva
Góis, Mariana Marcela
da Silva, Luiz Guilherme Salvino
Bezerra, Rosangela Maria Neves
Simabuco, Fernando Moreira
Kobarg, Jörg
Source :
Cells (2073-4409). Jan2023, Vol. 12 Issue 2, p256. 20p.
Publication Year :
2023

Abstract

NEK6 is a central kinase in developing castration-resistant prostate cancer (CRPC). However, the pathways regulated by NEK6 in CRPC are still unclear. Cancer cells have high reactive oxygen species (ROS) levels and easily adapt to this circumstance and avoid cell death by increasing antioxidant defenses. We knocked out the NEK6 gene and evaluated the redox state and DNA damage response in DU-145 cells. The knockout of NEK6 decreases the clonogenic capacity, proliferation, cell viability, and mitochondrial activity. Targeting the NEK6 gene increases the level of intracellular ROS; decreases the expression of antioxidant defenses (SOD1, SOD2, and PRDX3); increases JNK phosphorylation, a stress-responsive kinase; and increases DNA damage markers (p-ATM and γH2AX). The exogenous overexpression of NEK6 also increases the expression of these same antioxidant defenses and decreases γH2AX. The depletion of NEK6 also induces cell death by apoptosis and reduces the antiapoptotic Bcl-2 protein. NEK6-lacking cells have more sensitivity to cisplatin. Additionally, NEK6 regulates the nuclear localization of NF-κB2, suggesting NEK6 may regulate NF-κB2 activity. Therefore, NEK6 alters the redox balance, regulates the expression of antioxidant proteins and DNA damage, and its absence induces the death of DU-145 cells. NEK6 inhibition may be a new strategy for CRPC therapy. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
20734409
Volume :
12
Issue :
2
Database :
Academic Search Index
Journal :
Cells (2073-4409)
Publication Type :
Academic Journal
Accession number :
161437460
Full Text :
https://doi.org/10.3390/cells12020256