Increased migration and motility in XIAP-null cells mediated by the C-RAF protein kinase
Lauren G Russell1, Lydia A K Davis1, Jill E Hunter1
1Newcastle University Biosciences Institute, Faculty of Medical Sciences, Newcastle University, Newcastle upon Tyne, NE2 4HH, UK.
Abstract:
The product encoded by the X-linked inhibitor of apoptosis (XIAP) gene is a multi-functional protein which not only controls caspase-dependent cell death, but also participates in inflammatory signalling, copper homeostasis, response to hypoxia and control of cell migration. Deregulation of XIAP, either by elevated expression or inherited genetic deletion, is associated with several human disease states. Reconciling XIAP-dependent signalling pathways with its role in disease progression is essential to understand how XIAP promotes the progression of human pathologies. In this study we have created a panel of genetically modified XIAP-null cell lines using TALENs and CRISPR/Cas9 to investigate the functional outcome of XIAP deletion. Surprisingly, in our genetically modified cells XIAP deletion had no effect on programmed cell death, but instead the primary phenotype we observed was a profound increase in cell migration rates. Furthermore, we found that XIAP-dependent suppression of cell migration was dependent on XIAPdependent control of C-RAF levels, a protein kinase which controls cell signalling pathways that regulate the cytoskeleton. These results suggest that XIAP is not necessary for control of the apoptotic signalling cascade, however it does have a critical role in controlling cell migration and motility that cannot be compensated for in XIAP-knockout cells.
Insights
The X-linked inhibitor of apoptosis (XIAP) protein is not essential for programmed cell death. XIAP deletion significantly increases cell migration by affecting C-RAF levels, highlighting its role in cell motility.
Area of Science:
- Molecular Biology
- Cell Biology
- Genetics
Background:
- The X-linked inhibitor of apoptosis (XIAP) protein regulates apoptosis, inflammation, and cell migration.
- XIAP deregulation is linked to various human diseases.
- Understanding XIAP's signaling pathways is crucial for disease progression insights.
Purpose of the Study:
- To investigate the functional consequences of XIAP deletion.
- To determine XIAP's role in programmed cell death and cell migration.
Main Methods:
- Generation of XIAP-null cell lines using TALENs and CRISPR/Cas9 gene editing.
- Phenotypic analysis of cell death and migration rates.
- Investigation of XIAP's interaction with C-RAF signaling.
Main Results:
- XIAP deletion did not affect programmed cell death.
- XIAP-null cells exhibited significantly increased migration rates.
- XIAP-dependent suppression of migration involves control of C-RAF protein kinase levels.
Conclusions:
- XIAP is not essential for regulating the apoptotic signaling cascade.
- XIAP plays a critical, non-compensable role in controlling cell migration and motility.
- XIAP's function in cell migration is linked to its regulation of C-RAF signaling pathways.
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