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Inhibition of metastasis by HEXIM1 through effects on cell invasion and angiogenesis

We report on the role of Hexamethylene-bis-acetamide-inducible protein 1 (HEXIM1) as an inhibitor of metastasis. HEXIM1 expression is decreased in human metastatic breast cancers when compared to matched primary breast tumors. Similarly we observed decreased expression of HEXIM1 in lung metastasis w...

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Autores principales: Ketchart, Wannarasmi, Smith, Kerri M., Krupka, Tianyi, Wittmann, Bryan M., Hu, Yanduan, Rayman, Patricia A., Doughman, Yong Qiu, Albert, Jeffrey M., Bai, Xiadong, Finke, James H., Xu, Yan, Exner, Agata A., Montano, Monica M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3525740/
https://www.ncbi.nlm.nih.gov/pubmed/22964639
http://dx.doi.org/10.1038/onc.2012.405
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author Ketchart, Wannarasmi
Smith, Kerri M.
Krupka, Tianyi
Wittmann, Bryan M.
Hu, Yanduan
Rayman, Patricia A.
Doughman, Yong Qiu
Albert, Jeffrey M.
Bai, Xiadong
Finke, James H.
Xu, Yan
Exner, Agata A.
Montano, Monica M.
author_facet Ketchart, Wannarasmi
Smith, Kerri M.
Krupka, Tianyi
Wittmann, Bryan M.
Hu, Yanduan
Rayman, Patricia A.
Doughman, Yong Qiu
Albert, Jeffrey M.
Bai, Xiadong
Finke, James H.
Xu, Yan
Exner, Agata A.
Montano, Monica M.
author_sort Ketchart, Wannarasmi
collection PubMed
description We report on the role of Hexamethylene-bis-acetamide-inducible protein 1 (HEXIM1) as an inhibitor of metastasis. HEXIM1 expression is decreased in human metastatic breast cancers when compared to matched primary breast tumors. Similarly we observed decreased expression of HEXIM1 in lung metastasis when compared to primary mammary tumors in a mouse model of metastatic breast cancer, the Polyoma Middle-T antigen (PyMT) transgenic mouse. Re-expression of HEXIM1 (through transgene expression or localized delivery of a small molecule inducer of HEXIM1 expression, Hexamethylene-bis-acetamide) in PyMT mice resulted in inhibition of metastasis to the lung. Our present studies indicate that HEXIM1 downregulation of HIF-1α protein allows not only for inhibition of VEGF-regulated angiogenesis, but also inhibition of compensatory pro-angiogenic pathways and recruitment of bone marrow derived cells (BMDCs). Another novel finding is that HEXIM1 inhibits cell migration and invasion, that can be partly attributed to decreased membrane localization of the 67kDa laminin receptor, 67LR, and inhibition of the functional interaction of 67LR with laminin. Thus HEXIM1 re-expression in breast cancer has therapeutic advantages by simultaneously targeting more than one pathway involved in angiogenesis and metastasis. Our results also support the potential for HEXIM1 to indirectly act on multiple cell types to suppress metastatic cancer.
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spelling pubmed-35257402014-02-15 Inhibition of metastasis by HEXIM1 through effects on cell invasion and angiogenesis Ketchart, Wannarasmi Smith, Kerri M. Krupka, Tianyi Wittmann, Bryan M. Hu, Yanduan Rayman, Patricia A. Doughman, Yong Qiu Albert, Jeffrey M. Bai, Xiadong Finke, James H. Xu, Yan Exner, Agata A. Montano, Monica M. Oncogene Article We report on the role of Hexamethylene-bis-acetamide-inducible protein 1 (HEXIM1) as an inhibitor of metastasis. HEXIM1 expression is decreased in human metastatic breast cancers when compared to matched primary breast tumors. Similarly we observed decreased expression of HEXIM1 in lung metastasis when compared to primary mammary tumors in a mouse model of metastatic breast cancer, the Polyoma Middle-T antigen (PyMT) transgenic mouse. Re-expression of HEXIM1 (through transgene expression or localized delivery of a small molecule inducer of HEXIM1 expression, Hexamethylene-bis-acetamide) in PyMT mice resulted in inhibition of metastasis to the lung. Our present studies indicate that HEXIM1 downregulation of HIF-1α protein allows not only for inhibition of VEGF-regulated angiogenesis, but also inhibition of compensatory pro-angiogenic pathways and recruitment of bone marrow derived cells (BMDCs). Another novel finding is that HEXIM1 inhibits cell migration and invasion, that can be partly attributed to decreased membrane localization of the 67kDa laminin receptor, 67LR, and inhibition of the functional interaction of 67LR with laminin. Thus HEXIM1 re-expression in breast cancer has therapeutic advantages by simultaneously targeting more than one pathway involved in angiogenesis and metastasis. Our results also support the potential for HEXIM1 to indirectly act on multiple cell types to suppress metastatic cancer. 2012-09-10 2013-08-15 /pmc/articles/PMC3525740/ /pubmed/22964639 http://dx.doi.org/10.1038/onc.2012.405 Text en Users may view, print, copy, download and text and data- mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Ketchart, Wannarasmi
Smith, Kerri M.
Krupka, Tianyi
Wittmann, Bryan M.
Hu, Yanduan
Rayman, Patricia A.
Doughman, Yong Qiu
Albert, Jeffrey M.
Bai, Xiadong
Finke, James H.
Xu, Yan
Exner, Agata A.
Montano, Monica M.
Inhibition of metastasis by HEXIM1 through effects on cell invasion and angiogenesis
title Inhibition of metastasis by HEXIM1 through effects on cell invasion and angiogenesis
title_full Inhibition of metastasis by HEXIM1 through effects on cell invasion and angiogenesis
title_fullStr Inhibition of metastasis by HEXIM1 through effects on cell invasion and angiogenesis
title_full_unstemmed Inhibition of metastasis by HEXIM1 through effects on cell invasion and angiogenesis
title_short Inhibition of metastasis by HEXIM1 through effects on cell invasion and angiogenesis
title_sort inhibition of metastasis by hexim1 through effects on cell invasion and angiogenesis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3525740/
https://www.ncbi.nlm.nih.gov/pubmed/22964639
http://dx.doi.org/10.1038/onc.2012.405
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