Functional interactions between phosphatase POPX2 and mDia modulate RhoA pathways
10.1242/jcs.013557
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sg-nus-scholar.10635-1810252023-08-29T22:09:11Z Functional interactions between phosphatase POPX2 and mDia modulate RhoA pathways Xie, Y Tan, E.-J Wee, S Manser, E Lim, L Koh, C.-G DEPT OF PHARMACOLOGY phosphatase phosphatase POPX2 protein Cdc42 protein mDia1 Rac1 protein Rho guanine nucleotide binding protein RhoA guanine nucleotide binding protein serum response factor transcription factor unclassified drug actin polymerization article cell adhesion cell motility controlled study cytoskeleton human human cell priority journal protein analysis protein binding protein function protein protein interaction serum responsive element stress fiber transcription regulation Animals Biological Transport Carrier Proteins Immunoprecipitation Mice Models, Biological NIH 3T3 Cells Phosphoprotein Phosphatases Protein Binding rhoA GTP-Binding Protein RNA, Small Interfering Serum Response Factor Signal Transduction Stress Fibers Transcription, Genetic 10.1242/jcs.013557 Journal of Cell Science 121 4 514-521 2020-10-27T06:56:43Z 2020-10-27T06:56:43Z 2008 Article Xie, Y, Tan, E.-J, Wee, S, Manser, E, Lim, L, Koh, C.-G (2008). Functional interactions between phosphatase POPX2 and mDia modulate RhoA pathways. Journal of Cell Science 121 (4) : 514-521. ScholarBank@NUS Repository. https://doi.org/10.1242/jcs.013557 0021-9533 https://scholarbank.nus.edu.sg/handle/10635/181025 Attribution 4.0 International http://creativecommons.org/licenses/by/4.0/ Unpaywall 20201031 |
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phosphatase phosphatase POPX2 protein Cdc42 protein mDia1 Rac1 protein Rho guanine nucleotide binding protein RhoA guanine nucleotide binding protein serum response factor transcription factor unclassified drug actin polymerization article cell adhesion cell motility controlled study cytoskeleton human human cell priority journal protein analysis protein binding protein function protein protein interaction serum responsive element stress fiber transcription regulation Animals Biological Transport Carrier Proteins Immunoprecipitation Mice Models, Biological NIH 3T3 Cells Phosphoprotein Phosphatases Protein Binding rhoA GTP-Binding Protein RNA, Small Interfering Serum Response Factor Signal Transduction Stress Fibers Transcription, Genetic |
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phosphatase phosphatase POPX2 protein Cdc42 protein mDia1 Rac1 protein Rho guanine nucleotide binding protein RhoA guanine nucleotide binding protein serum response factor transcription factor unclassified drug actin polymerization article cell adhesion cell motility controlled study cytoskeleton human human cell priority journal protein analysis protein binding protein function protein protein interaction serum responsive element stress fiber transcription regulation Animals Biological Transport Carrier Proteins Immunoprecipitation Mice Models, Biological NIH 3T3 Cells Phosphoprotein Phosphatases Protein Binding rhoA GTP-Binding Protein RNA, Small Interfering Serum Response Factor Signal Transduction Stress Fibers Transcription, Genetic Xie, Y Tan, E.-J Wee, S Manser, E Lim, L Koh, C.-G Functional interactions between phosphatase POPX2 and mDia modulate RhoA pathways |
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10.1242/jcs.013557 |
author2 |
DEPT OF PHARMACOLOGY |
author_facet |
DEPT OF PHARMACOLOGY Xie, Y Tan, E.-J Wee, S Manser, E Lim, L Koh, C.-G |
format |
Article |
author |
Xie, Y Tan, E.-J Wee, S Manser, E Lim, L Koh, C.-G |
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Xie, Y |
title |
Functional interactions between phosphatase POPX2 and mDia modulate RhoA pathways |
title_short |
Functional interactions between phosphatase POPX2 and mDia modulate RhoA pathways |
title_full |
Functional interactions between phosphatase POPX2 and mDia modulate RhoA pathways |
title_fullStr |
Functional interactions between phosphatase POPX2 and mDia modulate RhoA pathways |
title_full_unstemmed |
Functional interactions between phosphatase POPX2 and mDia modulate RhoA pathways |
title_sort |
functional interactions between phosphatase popx2 and mdia modulate rhoa pathways |
publishDate |
2020 |
url |
https://scholarbank.nus.edu.sg/handle/10635/181025 |
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1779152743472037888 |