Transient receptor potential ankyrin 1 (TRPA1) mediates reactive oxygen species-induced Ca2+ entry, mitochondrial dysfunction, and caspase-3/7 activation in primary cultures of metastatic colorectal carcinoma cells

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作者
Pawan Faris
Agnese Rumolo
Giorgia Pellavio
Matteo Tanzi
Mauro Vismara
Roberto Berra-Romani
Andrea Gerbino
Salvatore Corallo
Paolo Pedrazzoli
Umberto Laforenza
Daniela Montagna
Francesco Moccia
机构
[1] University of Pavia,Department of Biology and Biotechnology “Lazzaro Spallanzani”
[2] Laboratory of Immunology Transplantation,Foundation IRCCS Policlinico San Matteo
[3] University of Pavia,Department of Molecular Medicine
[4] Benemérita Universidad Autónoma de Puebla,Department of Biomedicine, School of Medicine
[5] University of Bari Aldo Moro,Department of Biosciences, Biotechnologies and Environment
[6] Foundation IRCCS Policlinico San Matteo,Medical Oncology
[7] University of Pavia,Department of Sciences Clinic
来源
Cell Death Discovery | / 9卷
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摘要
Colorectal carcinoma (CRC) represents the fourth most common cancer worldwide and is the third most common cause of malignancy-associated mortality. Distant metastases to the liver and lungs are the main drivers of CRC-dependent death. Pro-oxidant therapies, which halt disease progression by exacerbating oxidative stress, represent an antitumour strategy that is currently exploited by chemotherapy and ionizing radiation. A more selective strategy to therapeutically exploit reactive oxygen species (ROS) signaling would consist in targeting a redox sensor that is up-regulated in metastatic cells and is tightly coupled to the stimulation of cancer cell death programs. The non-selective cation channel, Transient Receptor Potential Ankyrin 1 (TRPA1), serves as a sensor of the cellular redox state, being activated to promote extracellular Ca2+ entry by an increase in oxidative stress. Recent work demonstrated that TRPA1 channel protein is up-regulated in several cancer types and that TRPA1-mediated Ca2+ signals can either engage an antiapoptotic pro-survival signaling pathway or to promote mitochondrial Ca2+ dysfunction and apoptosis. Herein, we sought to assess for the first time the outcome of TRPA1 activation by ROS on primary cultures of metastatic colorectal carcinoma (mCRC cells). We found that TRPA1 channel protein is up-regulated and mediates enhanced hydrogen peroxide (H2O2)-induced Ca2+ entry in mCRC cells as compared to non-neoplastic control cells. The lipid peroxidation product 4-hydroxynonenal (4-HNE) is the main ROS responsible for TRPA1 activation upon mCRC cell exposure to oxidative stress. TRPA1-mediated Ca2+ entry in response to H2O2 and 4-HNE results in mitochondrial Ca2+ overload, followed by mitochondrial depolarization and caspase-3/7 activation. Therefore, targeting TRPA1 could represent an alternative strategy to eradicate metastatic CRC by enhancing its sensitivity to oxidative stress.
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[31]  
Deveci HA(2015)The TRPA1 channel amplifies the oxidative stress signal in melanoma Sci Signal 8 2411-undefined
[32]  
Akyuva Y(2021)D-4F, an ApoA-I mimetic peptide ameliorating TRPA1-mediated nocifensive behaviour in a model of neurogenic inflammation Cell Calcium 94 102499-undefined
[33]  
Nur G(2012)Localized TRPA1 channel Ca2+ signals stimulated by reactive oxygen species promote cerebral artery dilation Cell Calcium 52 38-undefined
[34]  
Naziroglu M(2016)BIRD-2, a BH4-domain-targeting peptide of Bcl-2, provokes Bax/Bak-independent cell death in B-cell cancers through mitochondrial Ca(2+)-dependent mPTP opening Oncol Lett 11 70-undefined
[35]  
Chen H(2022)Mitochondrial Ca(2+) and apoptosis Cell Calcium 101 70-undefined
[36]  
Li C(2016)Calcium efflux from the endoplasmic reticulum regulates cisplatin-induced apoptosis in human cervical cancer HeLa cells Toxins (Basel) 8 31098-undefined
[37]  
Hu H(2022)The bitter end: T2R bitter receptor agonists elevate nuclear calcium and induce apoptosis in non-ciliated airway epithelial cells Signal Transduct Target Ther 7 788-undefined
[38]  
Zhang B(2014)Apoptosis activation in human lung cancer cell lines by a novel synthetic peptide derived from conus californicus venom Med Sci 2 179-undefined
[39]  
Kiss F(2018)Colorectal liver metastasis: molecular mechanism and interventional therapy Oncotarget. 9 193-undefined
[40]  
Kormos V(2022)In vitro efficient expansion of tumor cells deriving from different types of human tumor samples Cell Death Differ 29 9821-undefined