Ion channel TRPM8 promotes hypoxic growth of prostate cancer cells via an O 2 ‐independent and RACK1 ‐mediated mechanism of HIF ‐1α stabilization

The growth adaptation of cancer cells to a hypoxic tumour microenvironment is mostly regulated by hypoxia‐induced transcription factor HIF ‐1. HIF ‐1 transcriptional activity is strictly controlled by protein levels of the HIF ‐1α subunit, which is tightly regulated by a well‐characterized O 2 ‐depe...

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Veröffentlicht in:The Journal of pathology 2014-12, Vol.234 (4), p.514-525
Hauptverfasser: Yu, Shan, Xu, Zhenyu, Zou, Chang, Wu, Dinglan, Wang, Yuliang, Yao, Xiaoqiang, Ng, Chi‐Fai, Chan, Franky L
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container_end_page 525
container_issue 4
container_start_page 514
container_title The Journal of pathology
container_volume 234
creator Yu, Shan
Xu, Zhenyu
Zou, Chang
Wu, Dinglan
Wang, Yuliang
Yao, Xiaoqiang
Ng, Chi‐Fai
Chan, Franky L
description The growth adaptation of cancer cells to a hypoxic tumour microenvironment is mostly regulated by hypoxia‐induced transcription factor HIF ‐1. HIF ‐1 transcriptional activity is strictly controlled by protein levels of the HIF ‐1α subunit, which is tightly regulated by a well‐characterized O 2 ‐dependent ubiquitin ligase–proteasomal degradation pathway. The cold‐sensitive Ca 2+ channel protein TRPM8 exhibits increased expression in advanced prostate cancer. However, its exact functional roles in prostate cancer growth regulation are unclear and controversial. In this work, we show that TRPM8 promotes in vitro hypoxic growth capacities, drug resistance, and in vivo tumourigenicity, accompanied with enhanced HIF ‐1α protein levels. These effects are further potentiated by TRPM8 agonists but suppressed by TRPM8 gene knockdown and blocking with antagonists or TRPM8 antibody. TRPM8 ‐induced suppression of HIF ‐1α ubiquitination and enhanced HIF ‐1 transactivation were attenuated by forced RACK1 expression and TRPM8 overexpression reduced phospho‐ RACK1 levels, thus affecting its dimerization status, and promoted RACK1 binding to HIF ‐1α and calcineurin. These data indicate that TRPM8 ‐induced increase of HIF ‐1α protein in hypoxia‐ or normoxia‐exposed prostate cancer cells was mediated through a newly characterized Ca 2+ ‐dependent but O 2 ‐independent mechanism involving binding of RACK1 to HIF ‐1α and RACK1 ‐mediated ubiquitination of HIF ‐1α. Collectively, our study not only provides a mechanistic insight into how TRPM8 promotes the hypoxic growth adaptation of cancer cells via its promotion of RACK1 ‐mediated stabilization of HIF ‐1α but also suggests a potential therapeutic strategy for prostate cancer by targeting TRPM8 .Copyright © 2014 Pathological Society of Great Britain and Ireland. Published by John Wiley & Sons, Ltd.
doi_str_mv 10.1002/path.4413
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HIF ‐1 transcriptional activity is strictly controlled by protein levels of the HIF ‐1α subunit, which is tightly regulated by a well‐characterized O 2 ‐dependent ubiquitin ligase–proteasomal degradation pathway. The cold‐sensitive Ca 2+ channel protein TRPM8 exhibits increased expression in advanced prostate cancer. However, its exact functional roles in prostate cancer growth regulation are unclear and controversial. In this work, we show that TRPM8 promotes in vitro hypoxic growth capacities, drug resistance, and in vivo tumourigenicity, accompanied with enhanced HIF ‐1α protein levels. These effects are further potentiated by TRPM8 agonists but suppressed by TRPM8 gene knockdown and blocking with antagonists or TRPM8 antibody. TRPM8 ‐induced suppression of HIF ‐1α ubiquitination and enhanced HIF ‐1 transactivation were attenuated by forced RACK1 expression and TRPM8 overexpression reduced phospho‐ RACK1 levels, thus affecting its dimerization status, and promoted RACK1 binding to HIF ‐1α and calcineurin. These data indicate that TRPM8 ‐induced increase of HIF ‐1α protein in hypoxia‐ or normoxia‐exposed prostate cancer cells was mediated through a newly characterized Ca 2+ ‐dependent but O 2 ‐independent mechanism involving binding of RACK1 to HIF ‐1α and RACK1 ‐mediated ubiquitination of HIF ‐1α. Collectively, our study not only provides a mechanistic insight into how TRPM8 promotes the hypoxic growth adaptation of cancer cells via its promotion of RACK1 ‐mediated stabilization of HIF ‐1α but also suggests a potential therapeutic strategy for prostate cancer by targeting TRPM8 .Copyright © 2014 Pathological Society of Great Britain and Ireland. 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TRPM8 ‐induced suppression of HIF ‐1α ubiquitination and enhanced HIF ‐1 transactivation were attenuated by forced RACK1 expression and TRPM8 overexpression reduced phospho‐ RACK1 levels, thus affecting its dimerization status, and promoted RACK1 binding to HIF ‐1α and calcineurin. These data indicate that TRPM8 ‐induced increase of HIF ‐1α protein in hypoxia‐ or normoxia‐exposed prostate cancer cells was mediated through a newly characterized Ca 2+ ‐dependent but O 2 ‐independent mechanism involving binding of RACK1 to HIF ‐1α and RACK1 ‐mediated ubiquitination of HIF ‐1α. Collectively, our study not only provides a mechanistic insight into how TRPM8 promotes the hypoxic growth adaptation of cancer cells via its promotion of RACK1 ‐mediated stabilization of HIF ‐1α but also suggests a potential therapeutic strategy for prostate cancer by targeting TRPM8 .Copyright © 2014 Pathological Society of Great Britain and Ireland. 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TRPM8 ‐induced suppression of HIF ‐1α ubiquitination and enhanced HIF ‐1 transactivation were attenuated by forced RACK1 expression and TRPM8 overexpression reduced phospho‐ RACK1 levels, thus affecting its dimerization status, and promoted RACK1 binding to HIF ‐1α and calcineurin. These data indicate that TRPM8 ‐induced increase of HIF ‐1α protein in hypoxia‐ or normoxia‐exposed prostate cancer cells was mediated through a newly characterized Ca 2+ ‐dependent but O 2 ‐independent mechanism involving binding of RACK1 to HIF ‐1α and RACK1 ‐mediated ubiquitination of HIF ‐1α. Collectively, our study not only provides a mechanistic insight into how TRPM8 promotes the hypoxic growth adaptation of cancer cells via its promotion of RACK1 ‐mediated stabilization of HIF ‐1α but also suggests a potential therapeutic strategy for prostate cancer by targeting TRPM8 .Copyright © 2014 Pathological Society of Great Britain and Ireland. 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title Ion channel TRPM8 promotes hypoxic growth of prostate cancer cells via an O 2 ‐independent and RACK1 ‐mediated mechanism of HIF ‐1α stabilization
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