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Sensing Domain Dynamics in Protein Kinase A-Iα Complexes by Solution X-ray Scattering

The catalytic (C) and regulatory (R) subunits of protein kinase A are exceptionally dynamic proteins. Interactions between the R- and C-subunits are regulated by cAMP binding to the two cyclic nucleotide-binding domains in the R-subunit. Mammalian cells express four different isoforms of the R-subun...

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Autores principales: Cheng, Cecilia Y., Yang, Jie, Taylor, Susan S., Blumenthal, Donald K.
Formato: Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2791020/
https://www.ncbi.nlm.nih.gov/pubmed/19837668
http://dx.doi.org/10.1074/jbc.M109.059493
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author Cheng, Cecilia Y.
Yang, Jie
Taylor, Susan S.
Blumenthal, Donald K.
author_facet Cheng, Cecilia Y.
Yang, Jie
Taylor, Susan S.
Blumenthal, Donald K.
author_sort Cheng, Cecilia Y.
collection PubMed
description The catalytic (C) and regulatory (R) subunits of protein kinase A are exceptionally dynamic proteins. Interactions between the R- and C-subunits are regulated by cAMP binding to the two cyclic nucleotide-binding domains in the R-subunit. Mammalian cells express four different isoforms of the R-subunit (RIα, RIβ, RIIα, and RIIβ) that all interact with the C-subunit in different ways. Here, we investigate the dynamic behavior of protein complexes between RIα and C-subunits using small angle x-ray scattering. We show that a single point mutation in RIα, R333K (which alters the cAMP-binding properties of Domain B) results in a compact shape compared with the extended shape of the wild-type R·C complex. A double mutant complex that disrupts the interaction site between the C-subunit and Domain B in RIα, RIα(AB)R333K·C(K285P), results in a broader P(r) curve that more closely resembles the P(r) profiles of wild-type complexes. These results together suggest that interactions between RIα Domain B and the C-subunit in the RIα·C complex involve large scale dynamics that can be disrupted by single point mutations in both proteins. In contrast to RIα·C complexes. Domain B in the RIIβ·C heterodimer is not dynamic and is critical for both inhibition and complex formation. Our study highlights the functional differences of domain dynamics between protein kinase A isoforms, providing a framework for elucidating the global organization of each holoenzyme and the cross-talk between the R- and C-subunits.
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spelling pubmed-27910202009-12-15 Sensing Domain Dynamics in Protein Kinase A-Iα Complexes by Solution X-ray Scattering Cheng, Cecilia Y. Yang, Jie Taylor, Susan S. Blumenthal, Donald K. J Biol Chem Protein Structure and Folding The catalytic (C) and regulatory (R) subunits of protein kinase A are exceptionally dynamic proteins. Interactions between the R- and C-subunits are regulated by cAMP binding to the two cyclic nucleotide-binding domains in the R-subunit. Mammalian cells express four different isoforms of the R-subunit (RIα, RIβ, RIIα, and RIIβ) that all interact with the C-subunit in different ways. Here, we investigate the dynamic behavior of protein complexes between RIα and C-subunits using small angle x-ray scattering. We show that a single point mutation in RIα, R333K (which alters the cAMP-binding properties of Domain B) results in a compact shape compared with the extended shape of the wild-type R·C complex. A double mutant complex that disrupts the interaction site between the C-subunit and Domain B in RIα, RIα(AB)R333K·C(K285P), results in a broader P(r) curve that more closely resembles the P(r) profiles of wild-type complexes. These results together suggest that interactions between RIα Domain B and the C-subunit in the RIα·C complex involve large scale dynamics that can be disrupted by single point mutations in both proteins. In contrast to RIα·C complexes. Domain B in the RIIβ·C heterodimer is not dynamic and is critical for both inhibition and complex formation. Our study highlights the functional differences of domain dynamics between protein kinase A isoforms, providing a framework for elucidating the global organization of each holoenzyme and the cross-talk between the R- and C-subunits. American Society for Biochemistry and Molecular Biology 2009-12-18 2009-10-15 /pmc/articles/PMC2791020/ /pubmed/19837668 http://dx.doi.org/10.1074/jbc.M109.059493 Text en © 2009 by The American Society for Biochemistry and Molecular Biology, Inc. Author's Choice—Final version full access. Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0/) applies to Author Choice Articles
spellingShingle Protein Structure and Folding
Cheng, Cecilia Y.
Yang, Jie
Taylor, Susan S.
Blumenthal, Donald K.
Sensing Domain Dynamics in Protein Kinase A-Iα Complexes by Solution X-ray Scattering
title Sensing Domain Dynamics in Protein Kinase A-Iα Complexes by Solution X-ray Scattering
title_full Sensing Domain Dynamics in Protein Kinase A-Iα Complexes by Solution X-ray Scattering
title_fullStr Sensing Domain Dynamics in Protein Kinase A-Iα Complexes by Solution X-ray Scattering
title_full_unstemmed Sensing Domain Dynamics in Protein Kinase A-Iα Complexes by Solution X-ray Scattering
title_short Sensing Domain Dynamics in Protein Kinase A-Iα Complexes by Solution X-ray Scattering
title_sort sensing domain dynamics in protein kinase a-iα complexes by solution x-ray scattering
topic Protein Structure and Folding
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2791020/
https://www.ncbi.nlm.nih.gov/pubmed/19837668
http://dx.doi.org/10.1074/jbc.M109.059493
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