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Mitotic centromere-associated kinesin (MCAK/KIF2C) regulates cell migration and invasion by modulating microtubule dynamics and focal adhesion turnover

Authors :
Moon, Ha Hyung
Kreis, Nina-Naomi
Friemel, Alexandra
Roth, Susanne
Schulte, Dorothea
Solbach, Christine
Louwen, Frank
Yuan, Juping
Ritter, Andreas Hans
Moon, Ha Hyung
Kreis, Nina-Naomi
Friemel, Alexandra
Roth, Susanne
Schulte, Dorothea
Solbach, Christine
Louwen, Frank
Yuan, Juping
Ritter, Andreas Hans
Publication Year :
2021

Abstract

The microtubule (MT) cytoskeleton is crucial for cell motility and migration by regulating multiple cellular activities such as transport and endocytosis of key components of focal adhesions (FA). The kinesin-13 family is important in the regulation of MT dynamics and the best characterized member of this family is the mitotic centromere-associated kinesin (MCAK/KIF2C). Interestingly, its overexpression has been reported to be related to increased metastasis in various tumor entities. Moreover, MCAK is involved in the migration and invasion behavior of various cell types. However, the precise molecular mechanisms were not completely clarified. To address these issues, we generated CRISPR/dCas9 HeLa and retinal pigment epithelium (RPE) cell lines overexpressing or downregulating MCAK. Both up- or downregulation of MCAK led to reduced cell motility and poor migration in malignant as well as benign cells. Specifically, it’s up- or downregulation impaired FA protein composition and phosphorylation status, interfered with a proper spindle and chromosome segregation, disturbed the assembly and disassembly rate of FA, delayed cell adhesion, and compromised the plus-tip dynamics of MTs. In conclusion, our data suggest MCAK act as an important regulator for cell motility and migration by affecting the actin-MT cytoskeleton dynamics and the FA turnover, providing molecular mechanisms by which deregulated MCAK could promote malignant progression and metastasis of tumor cells.

Details

Database :
OAIster
Notes :
application/zip, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1430304193
Document Type :
Electronic Resource