Protein disulfide isomerase a4 acts as a novel regulator of cancer growth through the procaspase pathway
Autor: | Meng-Ting Yang, Tien-Fen Kuo, Yet-Ran Chen, Yang Cy, Chen Ty, Liu Yj, Jiang St, Hsu Yj, Yeh Hh, Keng-Chang Tsai, Kazunari K. Yokoyama, Chen Kw, Hui-Ming Chen, Wen-Chin Yang, Yun-Jung Chiang |
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Rok vydání: | 2017 |
Předmět: |
Male
0301 basic medicine Cancer Research Programmed cell death Melanoma Experimental Protein Disulfide-Isomerases medicine.disease_cause Jurkat Cells Mice 03 medical and health sciences Cell Line Tumor Genetics medicine Animals Humans Protein disulfide-isomerase Molecular Biology Caspase Enzyme Precursors Mice Inbred BALB C biology Cell growth Lewis lung carcinoma Cancer Hep G2 Cells medicine.disease Cell biology Mice Inbred C57BL HEK293 Cells 030104 developmental biology Cell culture Caspases MCF-7 Cells biology.protein Female Carcinogenesis |
Zdroj: | Oncogene. 36:5484-5496 |
ISSN: | 1476-5594 0950-9232 |
DOI: | 10.1038/onc.2017.156 |
Popis: | Protein disulfide isomerase a4 (PDIA4) is implicated in the growth and death of tumor cells; however, its molecular mechanism and therapeutic potential in cancer are unclear. Here, we found that PDIA4 expression was upregulated in a variety of tumor cell lines and human lung adenocarcinoma tissues. Knockdown and overexpression of PDIA4 in tumor cells showed that PDIA4 facilitated cell growth via the reduction of caspases 3 and 7 activity. Consistently, Lewis lung carcinoma cells overexpressing PDIA4 grew faster than did parental cells in tumor-bearing mice, as shown by a reduced survival rate, increased tumor size and metastasis, and decreased cell death and caspases 3 and 7 activity. PDIA4 knockdown resulted in opposite outcomes. Moreover, results obtained in mice with spontaneous hepatoma indicated that PDIA4 deficiency significantly reduced hepatic tumorigenesis and cyst formation and increased mouse survival, tumor death, and caspases 3 and 7 activity. Mechanistic studies illustrated that PDIA4 negatively regulated tumor cell death by inhibiting degradation and activation of procaspases 3 and 7 via their mutual interaction in a CGHC-dependent manner. Finally, we found that 1,2-dihydroxytrideca-5,7,9,11-tetrayne, a PDIA4 inhibitor, reduced tumor development via enhancement of caspase-mediated cell death in TSA tumor-bearing mice. These findings characterize PDIA4 as a negative regulator of cancer cell apoptosis and suggest that PDIA4 is a potential therapeutic target for cancer. |
Databáze: | OpenAIRE |
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