Cargando…

Structures of the Ultra-High-Affinity Protein–Protein Complexes of Pyocins S2 and AP41 and Their Cognate Immunity Proteins from Pseudomonas aeruginosa

How ultra-high-affinity protein–protein interactions retain high specificity is still poorly understood. The interaction between colicin DNase domains and their inhibitory immunity (Im) proteins is an ultra-high-affinity interaction that is essential for the neutralisation of endogenous DNase cataly...

Descripción completa

Detalles Bibliográficos
Autores principales: Joshi, Amar, Grinter, Rhys, Josts, Inokentijs, Chen, Sabrina, Wojdyla, Justyna A., Lowe, Edward D., Kaminska, Renata, Sharp, Connor, McCaughey, Laura, Roszak, Aleksander W., Cogdell, Richard J., Byron, Olwyn, Walker, Daniel, Kleanthous, Colin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4548480/
https://www.ncbi.nlm.nih.gov/pubmed/26215615
http://dx.doi.org/10.1016/j.jmb.2015.07.014
_version_ 1782387200060555264
author Joshi, Amar
Grinter, Rhys
Josts, Inokentijs
Chen, Sabrina
Wojdyla, Justyna A.
Lowe, Edward D.
Kaminska, Renata
Sharp, Connor
McCaughey, Laura
Roszak, Aleksander W.
Cogdell, Richard J.
Byron, Olwyn
Walker, Daniel
Kleanthous, Colin
author_facet Joshi, Amar
Grinter, Rhys
Josts, Inokentijs
Chen, Sabrina
Wojdyla, Justyna A.
Lowe, Edward D.
Kaminska, Renata
Sharp, Connor
McCaughey, Laura
Roszak, Aleksander W.
Cogdell, Richard J.
Byron, Olwyn
Walker, Daniel
Kleanthous, Colin
author_sort Joshi, Amar
collection PubMed
description How ultra-high-affinity protein–protein interactions retain high specificity is still poorly understood. The interaction between colicin DNase domains and their inhibitory immunity (Im) proteins is an ultra-high-affinity interaction that is essential for the neutralisation of endogenous DNase catalytic activity and for protection against exogenous DNase bacteriocins. The colicin DNase–Im interaction is a model system for the study of high-affinity protein–protein interactions. However, despite the fact that closely related colicin-like bacteriocins are widely produced by Gram-negative bacteria, this interaction has only been studied using colicins from Escherichia coli. In this work, we present the first crystal structures of two pyocin DNase–Im complexes from Pseudomonas aeruginosa, pyocin S2 DNase–ImS2 and pyocin AP41 DNase–ImAP41. These structures represent divergent DNase–Im subfamilies and are important in extending our understanding of protein–protein interactions for this important class of high-affinity protein complex. A key finding of this work is that mutations within the immunity protein binding energy hotspot, helix III, are tolerated by complementary substitutions at the DNase–Immunity protein binding interface. Im helix III is strictly conserved in colicins where an Asp forms polar interactions with the DNase backbone. ImAP41 contains an Asp-to-Gly substitution in helix III and our structures show the role of a co-evolved substitution where Pro in DNase loop 4 occupies the volume vacated and removes the unfulfilled hydrogen bond. We observe the co-evolved mutations in other DNase–Immunity pairs that appear to underpin the split of this family into two distinct groups.
format Online
Article
Text
id pubmed-4548480
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-45484802015-09-03 Structures of the Ultra-High-Affinity Protein–Protein Complexes of Pyocins S2 and AP41 and Their Cognate Immunity Proteins from Pseudomonas aeruginosa Joshi, Amar Grinter, Rhys Josts, Inokentijs Chen, Sabrina Wojdyla, Justyna A. Lowe, Edward D. Kaminska, Renata Sharp, Connor McCaughey, Laura Roszak, Aleksander W. Cogdell, Richard J. Byron, Olwyn Walker, Daniel Kleanthous, Colin J Mol Biol Article How ultra-high-affinity protein–protein interactions retain high specificity is still poorly understood. The interaction between colicin DNase domains and their inhibitory immunity (Im) proteins is an ultra-high-affinity interaction that is essential for the neutralisation of endogenous DNase catalytic activity and for protection against exogenous DNase bacteriocins. The colicin DNase–Im interaction is a model system for the study of high-affinity protein–protein interactions. However, despite the fact that closely related colicin-like bacteriocins are widely produced by Gram-negative bacteria, this interaction has only been studied using colicins from Escherichia coli. In this work, we present the first crystal structures of two pyocin DNase–Im complexes from Pseudomonas aeruginosa, pyocin S2 DNase–ImS2 and pyocin AP41 DNase–ImAP41. These structures represent divergent DNase–Im subfamilies and are important in extending our understanding of protein–protein interactions for this important class of high-affinity protein complex. A key finding of this work is that mutations within the immunity protein binding energy hotspot, helix III, are tolerated by complementary substitutions at the DNase–Immunity protein binding interface. Im helix III is strictly conserved in colicins where an Asp forms polar interactions with the DNase backbone. ImAP41 contains an Asp-to-Gly substitution in helix III and our structures show the role of a co-evolved substitution where Pro in DNase loop 4 occupies the volume vacated and removes the unfulfilled hydrogen bond. We observe the co-evolved mutations in other DNase–Immunity pairs that appear to underpin the split of this family into two distinct groups. Elsevier 2015-08-28 /pmc/articles/PMC4548480/ /pubmed/26215615 http://dx.doi.org/10.1016/j.jmb.2015.07.014 Text en © 2015 The Authors. Published by Elsevier Ltd. http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Joshi, Amar
Grinter, Rhys
Josts, Inokentijs
Chen, Sabrina
Wojdyla, Justyna A.
Lowe, Edward D.
Kaminska, Renata
Sharp, Connor
McCaughey, Laura
Roszak, Aleksander W.
Cogdell, Richard J.
Byron, Olwyn
Walker, Daniel
Kleanthous, Colin
Structures of the Ultra-High-Affinity Protein–Protein Complexes of Pyocins S2 and AP41 and Their Cognate Immunity Proteins from Pseudomonas aeruginosa
title Structures of the Ultra-High-Affinity Protein–Protein Complexes of Pyocins S2 and AP41 and Their Cognate Immunity Proteins from Pseudomonas aeruginosa
title_full Structures of the Ultra-High-Affinity Protein–Protein Complexes of Pyocins S2 and AP41 and Their Cognate Immunity Proteins from Pseudomonas aeruginosa
title_fullStr Structures of the Ultra-High-Affinity Protein–Protein Complexes of Pyocins S2 and AP41 and Their Cognate Immunity Proteins from Pseudomonas aeruginosa
title_full_unstemmed Structures of the Ultra-High-Affinity Protein–Protein Complexes of Pyocins S2 and AP41 and Their Cognate Immunity Proteins from Pseudomonas aeruginosa
title_short Structures of the Ultra-High-Affinity Protein–Protein Complexes of Pyocins S2 and AP41 and Their Cognate Immunity Proteins from Pseudomonas aeruginosa
title_sort structures of the ultra-high-affinity protein–protein complexes of pyocins s2 and ap41 and their cognate immunity proteins from pseudomonas aeruginosa
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4548480/
https://www.ncbi.nlm.nih.gov/pubmed/26215615
http://dx.doi.org/10.1016/j.jmb.2015.07.014
work_keys_str_mv AT joshiamar structuresoftheultrahighaffinityproteinproteincomplexesofpyocinss2andap41andtheircognateimmunityproteinsfrompseudomonasaeruginosa
AT grinterrhys structuresoftheultrahighaffinityproteinproteincomplexesofpyocinss2andap41andtheircognateimmunityproteinsfrompseudomonasaeruginosa
AT jostsinokentijs structuresoftheultrahighaffinityproteinproteincomplexesofpyocinss2andap41andtheircognateimmunityproteinsfrompseudomonasaeruginosa
AT chensabrina structuresoftheultrahighaffinityproteinproteincomplexesofpyocinss2andap41andtheircognateimmunityproteinsfrompseudomonasaeruginosa
AT wojdylajustynaa structuresoftheultrahighaffinityproteinproteincomplexesofpyocinss2andap41andtheircognateimmunityproteinsfrompseudomonasaeruginosa
AT loweedwardd structuresoftheultrahighaffinityproteinproteincomplexesofpyocinss2andap41andtheircognateimmunityproteinsfrompseudomonasaeruginosa
AT kaminskarenata structuresoftheultrahighaffinityproteinproteincomplexesofpyocinss2andap41andtheircognateimmunityproteinsfrompseudomonasaeruginosa
AT sharpconnor structuresoftheultrahighaffinityproteinproteincomplexesofpyocinss2andap41andtheircognateimmunityproteinsfrompseudomonasaeruginosa
AT mccaugheylaura structuresoftheultrahighaffinityproteinproteincomplexesofpyocinss2andap41andtheircognateimmunityproteinsfrompseudomonasaeruginosa
AT roszakaleksanderw structuresoftheultrahighaffinityproteinproteincomplexesofpyocinss2andap41andtheircognateimmunityproteinsfrompseudomonasaeruginosa
AT cogdellrichardj structuresoftheultrahighaffinityproteinproteincomplexesofpyocinss2andap41andtheircognateimmunityproteinsfrompseudomonasaeruginosa
AT byronolwyn structuresoftheultrahighaffinityproteinproteincomplexesofpyocinss2andap41andtheircognateimmunityproteinsfrompseudomonasaeruginosa
AT walkerdaniel structuresoftheultrahighaffinityproteinproteincomplexesofpyocinss2andap41andtheircognateimmunityproteinsfrompseudomonasaeruginosa
AT kleanthouscolin structuresoftheultrahighaffinityproteinproteincomplexesofpyocinss2andap41andtheircognateimmunityproteinsfrompseudomonasaeruginosa