Inhibition of PAK-1 by Mesalazine Increases Cell Adhesion in Colorectal Cancer Cells

2011 ◽  
Vol 140 (5) ◽  
pp. S-402
Author(s):  
Vineeta Khare ◽  
Alex Lyakhovich ◽  
Michaela Lang ◽  
Boris Tichy ◽  
Sarka Pospisilova ◽  
...  
2007 ◽  
Vol 24 (3) ◽  
pp. 201-209 ◽  
Author(s):  
Cary B. Aarons ◽  
Olga Bajenova ◽  
Charles Andrews ◽  
Stanley Heydrick ◽  
Kristen N. Bushell ◽  
...  

2021 ◽  
Author(s):  
E.H. Bowler-Barnett ◽  
F. D. Martinez-Garcia ◽  
M. Sherwood ◽  
S. Weston ◽  
Y. Wang ◽  
...  

ABSTRACTGlycogen-specific kinase (GSK3β) is an integral regulator of the Wnt signalling pathway as well as many other diverse signalling pathways and processes. Dys-regulation of GSK3β is implicated in many different pathologies, including neurodegenerative disorders as well as many different tumour types. In the context of tumour development, GSK3β has been shown to play both oncogenic and tumour suppressor roles, depending upon tissue, signalling environment or disease progression. Although multiple substrates of the GSK3β kinase have been identified, the wider protein networks within which GSK3β participates are not well known, and the consequences of these interactions not well understood. In this study, LC-MS/MS expression analysis was performed using knockout GSK3β colorectal cancer cells and isogenic controls in colorectal cancer cell lines carrying dominant stabilizing mutations of β-Catenin. Consistent with the role GSK3β, we found that β-Catenin levels and canonical Wnt activity are unaffected by knockout of GSK3β and therefore use this knockout cell model to identify other processes in which GSK3β is implicated. Quantitative proteomic analysis revealed perturbation of proteins involved in cell-cell adhesion, and we characterize the phenotype and altered proteomic profiles associated with this. We also characterize the perturbation of metabolic pathways resulting from GSK3β knockout and identify defects in glycogen metabolism. In summary, using a precision colorectal cancer cell-line knockout model with constitutively activated β-Catenin we are able to identify several of the diverse pathways and processes associated with GSK3β function.


PLoS ONE ◽  
2021 ◽  
Vol 16 (11) ◽  
pp. e0246707
Author(s):  
Emily Bowler-Barnett ◽  
Francisco D. Martinez-Garcia ◽  
Matthew Sherwood ◽  
Ahood Aleidan ◽  
Steve John ◽  
...  

Glycogen-specific kinase (GSK3β) is an integral regulator of the Wnt signalling pathway as well as many other diverse signalling pathways and processes. Dys-regulation of GSK3β is implicated in many different pathologies, including neurodegenerative disorders as well as many different tumour types. In the context of tumour development, GSK3β has been shown to play both oncogenic and tumour suppressor roles, depending upon tissue, signalling environment or disease progression. Although multiple substrates of the GSK3β kinase have been identified, the wider protein networks within which GSK3β participates are not well known, and the consequences of these interactions not well understood. In this study, LC-MS/MS expression analysis was performed using knockout GSK3β colorectal cancer cells and isogenic controls in colorectal cancer cell lines carrying dominant stabilizing mutations of β-catenin. Consistent with the role of GSK3β, we found that β-catenin levels and canonical Wnt activity are unaffected by knockout of GSK3β and therefore used this knockout cell model to identify other processes in which GSK3β is implicated. Quantitative proteomic analysis revealed perturbation of proteins involved in cell-cell adhesion, and we characterized the phenotype and altered proteomic profiles associated with this. We also characterized the perturbation of metabolic pathways resulting from GSK3β knockout and identified defects in glycogen metabolism. In summary, using a precision colorectal cancer cell-line knockout model with constitutively activated β-catenin we identified several of the diverse pathways and processes associated with GSK3β function.


2011 ◽  
Vol 71 (5) ◽  
pp. 1989-1998 ◽  
Author(s):  
Rich Y.C. Hsu ◽  
Carlos H.F. Chan ◽  
Jonathan D. Spicer ◽  
Mathieu C. Rousseau ◽  
Betty Giannias ◽  
...  

2020 ◽  
pp. mbc.E20-05-0321
Author(s):  
Maree C. Faux ◽  
Lauren E. King ◽  
Serena R. Kane ◽  
Christopher Love ◽  
Oliver M. Sieber ◽  
...  

The APC tumor suppressor protein is associated with the regulation of Wnt signaling, however APC also controls other cellular processes including the regulation of cell adhesion and migration. The expression of full-length APC in SW480 colorectal cancer cells (SW480+APC) not only reduces Wnt signaling, but increases membrane E-cadherin and restores cell-cell adhesion. This report describes the effects of full-length, wild-type APC (fl-APC) on cell-cell adhesion genes and p120-catenin isoform switching in SW480 colon cancer cells: fl-APC increased the expression of genes implicated in cell-cell adhesion, whereas the expression of negative regulators of E-cadherin were decreased. Analysis of cell-cell adhesion-related proteins in SW480+APC cells revealed an increase in p120-catenin isoform 3A; similarly, depletion of APC altered the p120-catenin protein isoform profile. Expression of ESRP1 (epithelial splice regulatory protein 1) is increased in SW480+APC cells and its depletion results in reversion to the p120-catenin isoform 1A phenotype and reduced cell-cell adhesion. ESRP1 transcript is reduced in primary CRC and its expression correlates with the level of APC. Pyrvinium pamoate, which inhibits Wnt signaling, promotes ESRP1 expression. We conclude that re-expression of APC restores cell-cell adhesion gene and post-transcriptional regulatory programs leading to p120-catenin isoform switching and associated changes in cell-cell adhesion.


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