Cargando…

Calmodulin promotes matrix metalloproteinase 9 production and cell migration by inhibiting the ubiquitination and degradation of TBC1D3 oncoprotein in human breast cancer cells

The hominoid oncoprotein TBC1D3 enhances growth factor (GF) signaling and GF signaling, conversely, induces the ubiquitination and subsequent degradation of TBC1D3. However, little is known regarding the regulation of this degradation, and the role of TBC1D3 in the progression of tumors has also not...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhao, Huzi, Zhang, Lina, Zhang, Yongchen, Zhao, Lei, Wan, Qing, Wang, Bei, Bu, Xiaodong, Wan, Meiling, Shen, Chuanlu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5482662/
https://www.ncbi.nlm.nih.gov/pubmed/28422741
http://dx.doi.org/10.18632/oncotarget.16756
_version_ 1783245607201144832
author Zhao, Huzi
Zhang, Lina
Zhang, Yongchen
Zhao, Lei
Wan, Qing
Wang, Bei
Bu, Xiaodong
Wan, Meiling
Shen, Chuanlu
author_facet Zhao, Huzi
Zhang, Lina
Zhang, Yongchen
Zhao, Lei
Wan, Qing
Wang, Bei
Bu, Xiaodong
Wan, Meiling
Shen, Chuanlu
author_sort Zhao, Huzi
collection PubMed
description The hominoid oncoprotein TBC1D3 enhances growth factor (GF) signaling and GF signaling, conversely, induces the ubiquitination and subsequent degradation of TBC1D3. However, little is known regarding the regulation of this degradation, and the role of TBC1D3 in the progression of tumors has also not been defined. In the present study, we demonstrated that calmodulin (CaM), a ubiquitous cellular calcium sensor, specifically interacted with TBC1D3 in a Ca(2+)-dependent manner and inhibited GF signaling-induced ubiquitination and degradation of the oncoprotein in both cytoplasm and nucleus of human breast cancer cells. The CaM-interacting site of TBC1D3 was mapped to amino acids 157~171, which comprises two 1–14 hydrophobic motifs and one lysine residue (K166). Deletion of these motifs was shown to abolish interaction between TBC1D3 and CaM. Surprisingly, this deletion mutation caused inability of GF signaling to induce the ubiquitination and subsequent degradation of TBC1D3. In agreement with this, we identified lysine residue 166 within the CaM-interacting motifs of TBC1D3 as the actual site for the GF signaling-induced ubiquitination using mutational analysis. Point mutation of this lysine residue exhibited the same effect on TBC1D3 as the deletion mutant, suggesting that CaM inhibits GF signaling-induced degradation of TBC1D3 by occluding its ubiquitination at K166. Notably, we found that TBC1D3 promoted the expression and activation of MMP-9 and the migration of MCF-7 cells. Furthermore, interaction with CaM considerably enhanced such effect of TBC1D3. Taken together, our work reveals a novel model by which CaM promotes cell migration through inhibiting the ubiquitination and degradation of TBC1D3.
format Online
Article
Text
id pubmed-5482662
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher Impact Journals LLC
record_format MEDLINE/PubMed
spelling pubmed-54826622017-06-27 Calmodulin promotes matrix metalloproteinase 9 production and cell migration by inhibiting the ubiquitination and degradation of TBC1D3 oncoprotein in human breast cancer cells Zhao, Huzi Zhang, Lina Zhang, Yongchen Zhao, Lei Wan, Qing Wang, Bei Bu, Xiaodong Wan, Meiling Shen, Chuanlu Oncotarget Research Paper The hominoid oncoprotein TBC1D3 enhances growth factor (GF) signaling and GF signaling, conversely, induces the ubiquitination and subsequent degradation of TBC1D3. However, little is known regarding the regulation of this degradation, and the role of TBC1D3 in the progression of tumors has also not been defined. In the present study, we demonstrated that calmodulin (CaM), a ubiquitous cellular calcium sensor, specifically interacted with TBC1D3 in a Ca(2+)-dependent manner and inhibited GF signaling-induced ubiquitination and degradation of the oncoprotein in both cytoplasm and nucleus of human breast cancer cells. The CaM-interacting site of TBC1D3 was mapped to amino acids 157~171, which comprises two 1–14 hydrophobic motifs and one lysine residue (K166). Deletion of these motifs was shown to abolish interaction between TBC1D3 and CaM. Surprisingly, this deletion mutation caused inability of GF signaling to induce the ubiquitination and subsequent degradation of TBC1D3. In agreement with this, we identified lysine residue 166 within the CaM-interacting motifs of TBC1D3 as the actual site for the GF signaling-induced ubiquitination using mutational analysis. Point mutation of this lysine residue exhibited the same effect on TBC1D3 as the deletion mutant, suggesting that CaM inhibits GF signaling-induced degradation of TBC1D3 by occluding its ubiquitination at K166. Notably, we found that TBC1D3 promoted the expression and activation of MMP-9 and the migration of MCF-7 cells. Furthermore, interaction with CaM considerably enhanced such effect of TBC1D3. Taken together, our work reveals a novel model by which CaM promotes cell migration through inhibiting the ubiquitination and degradation of TBC1D3. Impact Journals LLC 2017-03-31 /pmc/articles/PMC5482662/ /pubmed/28422741 http://dx.doi.org/10.18632/oncotarget.16756 Text en Copyright: © 2017 Zhao et al. http://creativecommons.org/licenses/by/3.0/ This article is distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0/) (CC-BY), which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Research Paper
Zhao, Huzi
Zhang, Lina
Zhang, Yongchen
Zhao, Lei
Wan, Qing
Wang, Bei
Bu, Xiaodong
Wan, Meiling
Shen, Chuanlu
Calmodulin promotes matrix metalloproteinase 9 production and cell migration by inhibiting the ubiquitination and degradation of TBC1D3 oncoprotein in human breast cancer cells
title Calmodulin promotes matrix metalloproteinase 9 production and cell migration by inhibiting the ubiquitination and degradation of TBC1D3 oncoprotein in human breast cancer cells
title_full Calmodulin promotes matrix metalloproteinase 9 production and cell migration by inhibiting the ubiquitination and degradation of TBC1D3 oncoprotein in human breast cancer cells
title_fullStr Calmodulin promotes matrix metalloproteinase 9 production and cell migration by inhibiting the ubiquitination and degradation of TBC1D3 oncoprotein in human breast cancer cells
title_full_unstemmed Calmodulin promotes matrix metalloproteinase 9 production and cell migration by inhibiting the ubiquitination and degradation of TBC1D3 oncoprotein in human breast cancer cells
title_short Calmodulin promotes matrix metalloproteinase 9 production and cell migration by inhibiting the ubiquitination and degradation of TBC1D3 oncoprotein in human breast cancer cells
title_sort calmodulin promotes matrix metalloproteinase 9 production and cell migration by inhibiting the ubiquitination and degradation of tbc1d3 oncoprotein in human breast cancer cells
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5482662/
https://www.ncbi.nlm.nih.gov/pubmed/28422741
http://dx.doi.org/10.18632/oncotarget.16756
work_keys_str_mv AT zhaohuzi calmodulinpromotesmatrixmetalloproteinase9productionandcellmigrationbyinhibitingtheubiquitinationanddegradationoftbc1d3oncoproteininhumanbreastcancercells
AT zhanglina calmodulinpromotesmatrixmetalloproteinase9productionandcellmigrationbyinhibitingtheubiquitinationanddegradationoftbc1d3oncoproteininhumanbreastcancercells
AT zhangyongchen calmodulinpromotesmatrixmetalloproteinase9productionandcellmigrationbyinhibitingtheubiquitinationanddegradationoftbc1d3oncoproteininhumanbreastcancercells
AT zhaolei calmodulinpromotesmatrixmetalloproteinase9productionandcellmigrationbyinhibitingtheubiquitinationanddegradationoftbc1d3oncoproteininhumanbreastcancercells
AT wanqing calmodulinpromotesmatrixmetalloproteinase9productionandcellmigrationbyinhibitingtheubiquitinationanddegradationoftbc1d3oncoproteininhumanbreastcancercells
AT wangbei calmodulinpromotesmatrixmetalloproteinase9productionandcellmigrationbyinhibitingtheubiquitinationanddegradationoftbc1d3oncoproteininhumanbreastcancercells
AT buxiaodong calmodulinpromotesmatrixmetalloproteinase9productionandcellmigrationbyinhibitingtheubiquitinationanddegradationoftbc1d3oncoproteininhumanbreastcancercells
AT wanmeiling calmodulinpromotesmatrixmetalloproteinase9productionandcellmigrationbyinhibitingtheubiquitinationanddegradationoftbc1d3oncoproteininhumanbreastcancercells
AT shenchuanlu calmodulinpromotesmatrixmetalloproteinase9productionandcellmigrationbyinhibitingtheubiquitinationanddegradationoftbc1d3oncoproteininhumanbreastcancercells