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Wnt modulates MCL1 to control cell survival in triple negative breast cancer

BACKGROUND: Triple negative breast cancer (TNBC) has higher rates of recurrence and distant metastasis, and poorer outcome as compared to non-TNBC. Aberrant activation of WNT signaling has been detected in TNBC, which might be important for triggering oncogenic conversion of breast epithelial cell....

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Autores principales: Yang, Lixin, Perez, Aldwin Apollo, Fujie, Sayuri, Warden, Charles, Li, Jie, Wang, Yafan, Yung, Bryan, Chen, Yun-Ru, Liu, Xiyong, Zhang, Hang, Zheng, Shu, Liu, Zheng, Ann, David, Yen, Yun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3936852/
https://www.ncbi.nlm.nih.gov/pubmed/24564888
http://dx.doi.org/10.1186/1471-2407-14-124
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author Yang, Lixin
Perez, Aldwin Apollo
Fujie, Sayuri
Warden, Charles
Li, Jie
Wang, Yafan
Yung, Bryan
Chen, Yun-Ru
Liu, Xiyong
Zhang, Hang
Zheng, Shu
Liu, Zheng
Ann, David
Yen, Yun
author_facet Yang, Lixin
Perez, Aldwin Apollo
Fujie, Sayuri
Warden, Charles
Li, Jie
Wang, Yafan
Yung, Bryan
Chen, Yun-Ru
Liu, Xiyong
Zhang, Hang
Zheng, Shu
Liu, Zheng
Ann, David
Yen, Yun
author_sort Yang, Lixin
collection PubMed
description BACKGROUND: Triple negative breast cancer (TNBC) has higher rates of recurrence and distant metastasis, and poorer outcome as compared to non-TNBC. Aberrant activation of WNT signaling has been detected in TNBC, which might be important for triggering oncogenic conversion of breast epithelial cell. Therefore, we directed our focus on identifying the WNT ligand and its underlying mechanism in TNBC cells. METHODS: We performed large-scale analysis of public microarray data to screen the WNT ligands and the clinical significance of the responsible ligand in TNBC. WNT5B was identified and its overexpression in TNBC was confirmed by immunohistochemistry staining, Western blot and ELISA. ShRNA was used to knockdown WNT5B expression (shWNT5B). Cellular functional alteration with shWNT5B treatment was determined by using wound healing assay, mammosphere assay; while cell cycle and apoptosis were examined by flowcytometry. Mitochondrial morphology was photographed by electron microscope. Biological change of mitochondria was detected by RT-PCR and oxygen consumption assay. Activation of WNT pathway and its downstream targets were evaluated by liciferase assay, immunohistochemistry staining and immunoblot analysis. Statistical methods used in the experiments besides microarray analysis was two-tailed t-test. RESULTS: WNT5B was elevated both in the tumor and the patients’ serum. Suppression of WNT5B remarkably impaired cell growth, migration and mammosphere formation. Additionally, G0/G1 cell cycle arrest and caspase-independent apoptosis was observed. Study of the possible mechanism indicated that these effects occurred through suppression of mitochondrial biogenesis, as evidenced by reduced mitochondrial DNA (MtDNA) and compromised oxidative phosphorylation (OXPHOS). In Vivo and in vitro data uncovered that WNT5B modulated mitochondrial physiology was mediated by MCL1, which was regulated by WNT/β-catenin responsive gene, Myc. Clinic data analysis revealed that both WNT5B and MCL1 are associated with enhanced metastasis and decreased disease-free survival. CONCLUSIONS: All our findings suggested that WNT5B/MCL1 cascade is critical for TNBC and understanding its regulatory apparatus provided valuable insight into the pathogenesis of the tumor development and the guidance for targeting therapeutics.
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spelling pubmed-39368522014-02-28 Wnt modulates MCL1 to control cell survival in triple negative breast cancer Yang, Lixin Perez, Aldwin Apollo Fujie, Sayuri Warden, Charles Li, Jie Wang, Yafan Yung, Bryan Chen, Yun-Ru Liu, Xiyong Zhang, Hang Zheng, Shu Liu, Zheng Ann, David Yen, Yun BMC Cancer Research Article BACKGROUND: Triple negative breast cancer (TNBC) has higher rates of recurrence and distant metastasis, and poorer outcome as compared to non-TNBC. Aberrant activation of WNT signaling has been detected in TNBC, which might be important for triggering oncogenic conversion of breast epithelial cell. Therefore, we directed our focus on identifying the WNT ligand and its underlying mechanism in TNBC cells. METHODS: We performed large-scale analysis of public microarray data to screen the WNT ligands and the clinical significance of the responsible ligand in TNBC. WNT5B was identified and its overexpression in TNBC was confirmed by immunohistochemistry staining, Western blot and ELISA. ShRNA was used to knockdown WNT5B expression (shWNT5B). Cellular functional alteration with shWNT5B treatment was determined by using wound healing assay, mammosphere assay; while cell cycle and apoptosis were examined by flowcytometry. Mitochondrial morphology was photographed by electron microscope. Biological change of mitochondria was detected by RT-PCR and oxygen consumption assay. Activation of WNT pathway and its downstream targets were evaluated by liciferase assay, immunohistochemistry staining and immunoblot analysis. Statistical methods used in the experiments besides microarray analysis was two-tailed t-test. RESULTS: WNT5B was elevated both in the tumor and the patients’ serum. Suppression of WNT5B remarkably impaired cell growth, migration and mammosphere formation. Additionally, G0/G1 cell cycle arrest and caspase-independent apoptosis was observed. Study of the possible mechanism indicated that these effects occurred through suppression of mitochondrial biogenesis, as evidenced by reduced mitochondrial DNA (MtDNA) and compromised oxidative phosphorylation (OXPHOS). In Vivo and in vitro data uncovered that WNT5B modulated mitochondrial physiology was mediated by MCL1, which was regulated by WNT/β-catenin responsive gene, Myc. Clinic data analysis revealed that both WNT5B and MCL1 are associated with enhanced metastasis and decreased disease-free survival. CONCLUSIONS: All our findings suggested that WNT5B/MCL1 cascade is critical for TNBC and understanding its regulatory apparatus provided valuable insight into the pathogenesis of the tumor development and the guidance for targeting therapeutics. BioMed Central 2014-02-24 /pmc/articles/PMC3936852/ /pubmed/24564888 http://dx.doi.org/10.1186/1471-2407-14-124 Text en Copyright © 2014 Yang et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly credited. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Research Article
Yang, Lixin
Perez, Aldwin Apollo
Fujie, Sayuri
Warden, Charles
Li, Jie
Wang, Yafan
Yung, Bryan
Chen, Yun-Ru
Liu, Xiyong
Zhang, Hang
Zheng, Shu
Liu, Zheng
Ann, David
Yen, Yun
Wnt modulates MCL1 to control cell survival in triple negative breast cancer
title Wnt modulates MCL1 to control cell survival in triple negative breast cancer
title_full Wnt modulates MCL1 to control cell survival in triple negative breast cancer
title_fullStr Wnt modulates MCL1 to control cell survival in triple negative breast cancer
title_full_unstemmed Wnt modulates MCL1 to control cell survival in triple negative breast cancer
title_short Wnt modulates MCL1 to control cell survival in triple negative breast cancer
title_sort wnt modulates mcl1 to control cell survival in triple negative breast cancer
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3936852/
https://www.ncbi.nlm.nih.gov/pubmed/24564888
http://dx.doi.org/10.1186/1471-2407-14-124
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