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Silencing of Atp6v1c1 Prevents Breast Cancer Growth and Bone Metastasis

Previous studies have shown that Atp6v1c1, a regulator of the assembly of the V0 and V1 domains of the V-ATPase complex, is up-regulated in metastatic oral tumors. Despite these studies, the function of Atp6v1c1 in tumor growth and metastasis is still unknown. Atp6v1c1's expression in metastati...

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Autores principales: Feng, Shengmei, Zhu, Guochun, McConnell, Matthew, Deng, Lianfu, Zhao, Qiang, Wu, Mengrui, Zhou, Qi, Wang, Jinshen, Qi, Jin, Li, Yi-Ping, Chen, Wei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3805834/
https://www.ncbi.nlm.nih.gov/pubmed/24155661
http://dx.doi.org/10.7150/ijbs.6030
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author Feng, Shengmei
Zhu, Guochun
McConnell, Matthew
Deng, Lianfu
Zhao, Qiang
Wu, Mengrui
Zhou, Qi
Wang, Jinshen
Qi, Jin
Li, Yi-Ping
Chen, Wei
author_facet Feng, Shengmei
Zhu, Guochun
McConnell, Matthew
Deng, Lianfu
Zhao, Qiang
Wu, Mengrui
Zhou, Qi
Wang, Jinshen
Qi, Jin
Li, Yi-Ping
Chen, Wei
author_sort Feng, Shengmei
collection PubMed
description Previous studies have shown that Atp6v1c1, a regulator of the assembly of the V0 and V1 domains of the V-ATPase complex, is up-regulated in metastatic oral tumors. Despite these studies, the function of Atp6v1c1 in tumor growth and metastasis is still unknown. Atp6v1c1's expression in metastatic oral squamous cell carcinoma indicates that Atp6v1c1 has an important function in cancer growth and metastasis. We hypothesized that elevated expression of Atp6v1c1 is essential to cancer growth and metastasis and that Atp6v1c1 promotes cancer growth and metastasis through activation of V-ATPase activity. To test this hypothesis, a Lentivirus-mediated RNAi knockdown approach was used to study the function of Atp6v1c1 in mouse 4T1 mammary tumor cell proliferation and migration in vitro and cancer growth and metastasis in vivo. Our data revealed that silencing of Atp6v1c1 in 4T1 cancer cells inhibited lysosomal acidification and severely impaired 4T1 cell growth, migration, and invasion through Matrigel in vitro. We also show that Atp6v1c1 knockdown with Lenti-c1s3, a lentivirus targeting Atp6v1c1 for shRNA mediated knockdown, can significantly inhibit 4T1 xenograft tumor growth, metastasis, and osteolytic lesions in vivo. Our study demonstrates that Atp6v1c1 may promote breast cancer growth and bone metastasis through regulation of lysosomal V-ATPase activity, indicating that Atp6v1c1 may be a viable target for breast cancer therapy and silencing of Atp6v1c1 may be an innovative therapeutic approach for the treatment and prevention of breast cancer growth and metastasis.
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spelling pubmed-38058342013-10-23 Silencing of Atp6v1c1 Prevents Breast Cancer Growth and Bone Metastasis Feng, Shengmei Zhu, Guochun McConnell, Matthew Deng, Lianfu Zhao, Qiang Wu, Mengrui Zhou, Qi Wang, Jinshen Qi, Jin Li, Yi-Ping Chen, Wei Int J Biol Sci Research Paper Previous studies have shown that Atp6v1c1, a regulator of the assembly of the V0 and V1 domains of the V-ATPase complex, is up-regulated in metastatic oral tumors. Despite these studies, the function of Atp6v1c1 in tumor growth and metastasis is still unknown. Atp6v1c1's expression in metastatic oral squamous cell carcinoma indicates that Atp6v1c1 has an important function in cancer growth and metastasis. We hypothesized that elevated expression of Atp6v1c1 is essential to cancer growth and metastasis and that Atp6v1c1 promotes cancer growth and metastasis through activation of V-ATPase activity. To test this hypothesis, a Lentivirus-mediated RNAi knockdown approach was used to study the function of Atp6v1c1 in mouse 4T1 mammary tumor cell proliferation and migration in vitro and cancer growth and metastasis in vivo. Our data revealed that silencing of Atp6v1c1 in 4T1 cancer cells inhibited lysosomal acidification and severely impaired 4T1 cell growth, migration, and invasion through Matrigel in vitro. We also show that Atp6v1c1 knockdown with Lenti-c1s3, a lentivirus targeting Atp6v1c1 for shRNA mediated knockdown, can significantly inhibit 4T1 xenograft tumor growth, metastasis, and osteolytic lesions in vivo. Our study demonstrates that Atp6v1c1 may promote breast cancer growth and bone metastasis through regulation of lysosomal V-ATPase activity, indicating that Atp6v1c1 may be a viable target for breast cancer therapy and silencing of Atp6v1c1 may be an innovative therapeutic approach for the treatment and prevention of breast cancer growth and metastasis. Ivyspring International Publisher 2013-09-05 /pmc/articles/PMC3805834/ /pubmed/24155661 http://dx.doi.org/10.7150/ijbs.6030 Text en © Ivyspring International Publisher. This is an open-access article distributed under the terms of the Creative Commons License (http://creativecommons.org/licenses/by-nc-nd/3.0/). Reproduction is permitted for personal, noncommercial use, provided that the article is in whole, unmodified, and properly cited.
spellingShingle Research Paper
Feng, Shengmei
Zhu, Guochun
McConnell, Matthew
Deng, Lianfu
Zhao, Qiang
Wu, Mengrui
Zhou, Qi
Wang, Jinshen
Qi, Jin
Li, Yi-Ping
Chen, Wei
Silencing of Atp6v1c1 Prevents Breast Cancer Growth and Bone Metastasis
title Silencing of Atp6v1c1 Prevents Breast Cancer Growth and Bone Metastasis
title_full Silencing of Atp6v1c1 Prevents Breast Cancer Growth and Bone Metastasis
title_fullStr Silencing of Atp6v1c1 Prevents Breast Cancer Growth and Bone Metastasis
title_full_unstemmed Silencing of Atp6v1c1 Prevents Breast Cancer Growth and Bone Metastasis
title_short Silencing of Atp6v1c1 Prevents Breast Cancer Growth and Bone Metastasis
title_sort silencing of atp6v1c1 prevents breast cancer growth and bone metastasis
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3805834/
https://www.ncbi.nlm.nih.gov/pubmed/24155661
http://dx.doi.org/10.7150/ijbs.6030
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