WAVE2 Protein Complex Coupled to Membrane and Microtubules
E-cadherin is one of the key molecules in the formation of cell-cell adhesion and interacts intracellularly with a group of proteins collectively named catenins, through which the E-cadherin-catenin complex is anchored to actin-based cytoskeletal components. Although cell-cell adhesion is often disr...
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Online Access: | http://dx.doi.org/10.1155/2012/590531 |
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doaj-f9017f3e5ea3469b8ef64e357a6d6a032020-11-25T00:49:08ZengHindawi LimitedJournal of Oncology1687-84501687-84692012-01-01201210.1155/2012/590531590531WAVE2 Protein Complex Coupled to Membrane and MicrotubulesKazuhide Takahashi0Molecular Cell Biology Division, Kanagawa Cancer Center Research Institute, Yokohama 241-0815, JapanE-cadherin is one of the key molecules in the formation of cell-cell adhesion and interacts intracellularly with a group of proteins collectively named catenins, through which the E-cadherin-catenin complex is anchored to actin-based cytoskeletal components. Although cell-cell adhesion is often disrupted in cancer cells by either genetic or epigenetic alterations in cell adhesion molecules, disruption of cell-cell adhesion alone seems to be insufficient for the induction of cancer cell migration and invasion. A small GTP-binding protein, Rac1, induces the specific cellular protrusions lamellipodia via WAVE2, a member of WASP/WAVE family of the actin cytoskeletal regulatory proteins. Biochemical and pharmacological investigations have revealed that WAVE2 interacts with many proteins that regulate microtubule growth, actin assembly, and membrane targeting of proteins, all of which are necessary for directional cell migration through lamellipodia formation. These findings might have important implications for the development of effective therapeutic agents against cancer cell migration and invasion.http://dx.doi.org/10.1155/2012/590531 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Kazuhide Takahashi |
spellingShingle |
Kazuhide Takahashi WAVE2 Protein Complex Coupled to Membrane and Microtubules Journal of Oncology |
author_facet |
Kazuhide Takahashi |
author_sort |
Kazuhide Takahashi |
title |
WAVE2 Protein Complex Coupled to Membrane and Microtubules |
title_short |
WAVE2 Protein Complex Coupled to Membrane and Microtubules |
title_full |
WAVE2 Protein Complex Coupled to Membrane and Microtubules |
title_fullStr |
WAVE2 Protein Complex Coupled to Membrane and Microtubules |
title_full_unstemmed |
WAVE2 Protein Complex Coupled to Membrane and Microtubules |
title_sort |
wave2 protein complex coupled to membrane and microtubules |
publisher |
Hindawi Limited |
series |
Journal of Oncology |
issn |
1687-8450 1687-8469 |
publishDate |
2012-01-01 |
description |
E-cadherin is one of the key molecules in the formation of cell-cell adhesion and interacts intracellularly with a group of proteins collectively named catenins, through which the E-cadherin-catenin complex is anchored to actin-based cytoskeletal components. Although cell-cell adhesion is often disrupted in cancer cells by either genetic or epigenetic alterations in cell adhesion molecules, disruption of cell-cell adhesion alone seems to be insufficient for the induction of cancer cell migration and invasion. A small GTP-binding protein, Rac1, induces the specific cellular protrusions lamellipodia via WAVE2, a member of WASP/WAVE family of the actin cytoskeletal regulatory proteins. Biochemical and pharmacological investigations have revealed that WAVE2 interacts with many proteins that regulate microtubule growth, actin assembly, and membrane targeting of proteins, all of which are necessary for directional cell migration through lamellipodia formation. These findings might have important implications for the development of effective therapeutic agents against cancer cell migration and invasion. |
url |
http://dx.doi.org/10.1155/2012/590531 |
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AT kazuhidetakahashi wave2proteincomplexcoupledtomembraneandmicrotubules |
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