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Molecular Basis of Filamin A-FilGAP Interaction and Its Impairment in Congenital Disorders Associated with Filamin A Mutations

BACKGROUND: Mutations in filamin A (FLNa), an essential cytoskeletal protein with multiple binding partners, cause developmental anomalies in humans. METHODOLOGY/PRINCIPAL FINDINGS: We determined the structure of the 23(rd) Ig repeat of FLNa (IgFLNa23) that interacts with FilGAP, a Rac-specific GTPa...

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Autores principales: Nakamura, Fumihiko, Heikkinen, Outi, Pentikäinen, Olli T., Osborn, Teresia M., Kasza, Karen E., Weitz, David A., Kupiainen, Olga, Permi, Perttu, Kilpeläinen, Ilkka, Ylänne, Jari, Hartwig, John H., Stossel, Thomas P.
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2654154/
https://www.ncbi.nlm.nih.gov/pubmed/19293932
http://dx.doi.org/10.1371/journal.pone.0004928
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author Nakamura, Fumihiko
Heikkinen, Outi
Pentikäinen, Olli T.
Osborn, Teresia M.
Kasza, Karen E.
Weitz, David A.
Kupiainen, Olga
Permi, Perttu
Kilpeläinen, Ilkka
Ylänne, Jari
Hartwig, John H.
Stossel, Thomas P.
author_facet Nakamura, Fumihiko
Heikkinen, Outi
Pentikäinen, Olli T.
Osborn, Teresia M.
Kasza, Karen E.
Weitz, David A.
Kupiainen, Olga
Permi, Perttu
Kilpeläinen, Ilkka
Ylänne, Jari
Hartwig, John H.
Stossel, Thomas P.
author_sort Nakamura, Fumihiko
collection PubMed
description BACKGROUND: Mutations in filamin A (FLNa), an essential cytoskeletal protein with multiple binding partners, cause developmental anomalies in humans. METHODOLOGY/PRINCIPAL FINDINGS: We determined the structure of the 23(rd) Ig repeat of FLNa (IgFLNa23) that interacts with FilGAP, a Rac-specific GTPase-activating protein and regulator of cell polarity and movement, and the effect of the three disease-related mutations on this interaction. A combination of NMR structural analysis and in silico modeling revealed the structural interface details between the C and D β-strands of the IgFLNa23 and the C-terminal 32 residues of FilGAP. Mutagenesis of the predicted key interface residues confirmed the binding constraints between the two proteins. Specific loss-of-function FLNa constructs were generated and used to analyze the importance of the FLNa-FilGAP interaction in vivo. Point mutagenesis revealed that disruption of the FLNa-FilGAP interface perturbs cell spreading. FilGAP does not bind FLNa homologs FLNb or FLNc establishing the importance of this interaction to the human FLNa mutations. Tight complex formation requires dimerization of both partners and the correct alignment of the binding surfaces, which is promoted by a flexible hinge domain between repeats 23 and 24 of FLNa. FLNa mutations associated with human developmental anomalies disrupt the binding interaction and weaken the elasticity of FLNa/F-actin network under high mechanical stress. CONCLUSIONS/SIGNIFICANCE: Mutational analysis informed by structure can generate reagents for probing specific cellular interactions of FLNa. Disease-related FLNa mutations have demonstrable effects on FLNa function.
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spelling pubmed-26541542009-03-18 Molecular Basis of Filamin A-FilGAP Interaction and Its Impairment in Congenital Disorders Associated with Filamin A Mutations Nakamura, Fumihiko Heikkinen, Outi Pentikäinen, Olli T. Osborn, Teresia M. Kasza, Karen E. Weitz, David A. Kupiainen, Olga Permi, Perttu Kilpeläinen, Ilkka Ylänne, Jari Hartwig, John H. Stossel, Thomas P. PLoS One Research Article BACKGROUND: Mutations in filamin A (FLNa), an essential cytoskeletal protein with multiple binding partners, cause developmental anomalies in humans. METHODOLOGY/PRINCIPAL FINDINGS: We determined the structure of the 23(rd) Ig repeat of FLNa (IgFLNa23) that interacts with FilGAP, a Rac-specific GTPase-activating protein and regulator of cell polarity and movement, and the effect of the three disease-related mutations on this interaction. A combination of NMR structural analysis and in silico modeling revealed the structural interface details between the C and D β-strands of the IgFLNa23 and the C-terminal 32 residues of FilGAP. Mutagenesis of the predicted key interface residues confirmed the binding constraints between the two proteins. Specific loss-of-function FLNa constructs were generated and used to analyze the importance of the FLNa-FilGAP interaction in vivo. Point mutagenesis revealed that disruption of the FLNa-FilGAP interface perturbs cell spreading. FilGAP does not bind FLNa homologs FLNb or FLNc establishing the importance of this interaction to the human FLNa mutations. Tight complex formation requires dimerization of both partners and the correct alignment of the binding surfaces, which is promoted by a flexible hinge domain between repeats 23 and 24 of FLNa. FLNa mutations associated with human developmental anomalies disrupt the binding interaction and weaken the elasticity of FLNa/F-actin network under high mechanical stress. CONCLUSIONS/SIGNIFICANCE: Mutational analysis informed by structure can generate reagents for probing specific cellular interactions of FLNa. Disease-related FLNa mutations have demonstrable effects on FLNa function. Public Library of Science 2009-03-18 /pmc/articles/PMC2654154/ /pubmed/19293932 http://dx.doi.org/10.1371/journal.pone.0004928 Text en Nakamura et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Nakamura, Fumihiko
Heikkinen, Outi
Pentikäinen, Olli T.
Osborn, Teresia M.
Kasza, Karen E.
Weitz, David A.
Kupiainen, Olga
Permi, Perttu
Kilpeläinen, Ilkka
Ylänne, Jari
Hartwig, John H.
Stossel, Thomas P.
Molecular Basis of Filamin A-FilGAP Interaction and Its Impairment in Congenital Disorders Associated with Filamin A Mutations
title Molecular Basis of Filamin A-FilGAP Interaction and Its Impairment in Congenital Disorders Associated with Filamin A Mutations
title_full Molecular Basis of Filamin A-FilGAP Interaction and Its Impairment in Congenital Disorders Associated with Filamin A Mutations
title_fullStr Molecular Basis of Filamin A-FilGAP Interaction and Its Impairment in Congenital Disorders Associated with Filamin A Mutations
title_full_unstemmed Molecular Basis of Filamin A-FilGAP Interaction and Its Impairment in Congenital Disorders Associated with Filamin A Mutations
title_short Molecular Basis of Filamin A-FilGAP Interaction and Its Impairment in Congenital Disorders Associated with Filamin A Mutations
title_sort molecular basis of filamin a-filgap interaction and its impairment in congenital disorders associated with filamin a mutations
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2654154/
https://www.ncbi.nlm.nih.gov/pubmed/19293932
http://dx.doi.org/10.1371/journal.pone.0004928
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