Cargando…

Mutation of Tyr137 of the universal Escherichia coli fimbrial adhesin FimH relaxes the tyrosine gate prior to mannose binding

The most prevalent diseases manifested by Escherichia coli are acute and recurrent bladder infections and chronic inflammatory bowel diseases such as Crohn’s disease. E. coli clinical isolates express the FimH adhesin, which consists of a mannose-specific lectin domain connected via a pilin domain t...

Descripción completa

Detalles Bibliográficos
Autores principales: Rabbani, Said, Krammer, Eva-Maria, Roos, Goedele, Zalewski, Adam, Preston, Roland, Eid, Sameh, Zihlmann, Pascal, Prévost, Martine, Lensink, Marc F., Thompson, Andrew, Ernst, Beat, Bouckaert, Julie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: International Union of Crystallography 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5331462/
https://www.ncbi.nlm.nih.gov/pubmed/28250938
http://dx.doi.org/10.1107/S2052252516016675
_version_ 1782511382368878592
author Rabbani, Said
Krammer, Eva-Maria
Roos, Goedele
Zalewski, Adam
Preston, Roland
Eid, Sameh
Zihlmann, Pascal
Prévost, Martine
Lensink, Marc F.
Thompson, Andrew
Ernst, Beat
Bouckaert, Julie
author_facet Rabbani, Said
Krammer, Eva-Maria
Roos, Goedele
Zalewski, Adam
Preston, Roland
Eid, Sameh
Zihlmann, Pascal
Prévost, Martine
Lensink, Marc F.
Thompson, Andrew
Ernst, Beat
Bouckaert, Julie
author_sort Rabbani, Said
collection PubMed
description The most prevalent diseases manifested by Escherichia coli are acute and recurrent bladder infections and chronic inflammatory bowel diseases such as Crohn’s disease. E. coli clinical isolates express the FimH adhesin, which consists of a mannose-specific lectin domain connected via a pilin domain to the tip of type 1 pili. Although the isolated FimH lectin domain has affinities in the nanomolar range for all high-mannosidic glycans, differentiation between these glycans is based on their capacity to form predominantly hydrophobic interactions within the tyrosine gate at the entrance to the binding pocket. In this study, novel crystal structures of tyrosine-gate mutants of FimH, ligand-free or in complex with heptyl α-d-O-mannopyranoside or 4-biphenyl α-d-O-mannopyranoside, are combined with quantum-mechanical calculations and molecular-dynamics simulations. In the Y48A FimH crystal structure, a large increase in the dynamics of the alkyl chain of heptyl α-d-O-mannopyranoside attempts to compensate for the absence of the aromatic ring; however, the highly energetic and stringent mannose-binding pocket of wild-type FimH is largely maintained. The Y137A mutation, on the other hand, is the most detrimental to FimH affinity and specificity: (i) in the absence of ligand the FimH C-terminal residue Thr158 intrudes into the mannose-binding pocket and (ii) ethylenediaminetetraacetic acid interacts strongly with Glu50, Thr53 and Asn136, in spite of multiple dialysis and purification steps. Upon mutation, pre-ligand-binding relaxation of the backbone dihedral angles at position 137 in the tyrosine gate and their coupling to Tyr48 via the interiorly located Ile52 form the basis of the loss of affinity of the FimH adhesin in the Y137A mutant.
format Online
Article
Text
id pubmed-5331462
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher International Union of Crystallography
record_format MEDLINE/PubMed
spelling pubmed-53314622017-03-01 Mutation of Tyr137 of the universal Escherichia coli fimbrial adhesin FimH relaxes the tyrosine gate prior to mannose binding Rabbani, Said Krammer, Eva-Maria Roos, Goedele Zalewski, Adam Preston, Roland Eid, Sameh Zihlmann, Pascal Prévost, Martine Lensink, Marc F. Thompson, Andrew Ernst, Beat Bouckaert, Julie IUCrJ Research Papers The most prevalent diseases manifested by Escherichia coli are acute and recurrent bladder infections and chronic inflammatory bowel diseases such as Crohn’s disease. E. coli clinical isolates express the FimH adhesin, which consists of a mannose-specific lectin domain connected via a pilin domain to the tip of type 1 pili. Although the isolated FimH lectin domain has affinities in the nanomolar range for all high-mannosidic glycans, differentiation between these glycans is based on their capacity to form predominantly hydrophobic interactions within the tyrosine gate at the entrance to the binding pocket. In this study, novel crystal structures of tyrosine-gate mutants of FimH, ligand-free or in complex with heptyl α-d-O-mannopyranoside or 4-biphenyl α-d-O-mannopyranoside, are combined with quantum-mechanical calculations and molecular-dynamics simulations. In the Y48A FimH crystal structure, a large increase in the dynamics of the alkyl chain of heptyl α-d-O-mannopyranoside attempts to compensate for the absence of the aromatic ring; however, the highly energetic and stringent mannose-binding pocket of wild-type FimH is largely maintained. The Y137A mutation, on the other hand, is the most detrimental to FimH affinity and specificity: (i) in the absence of ligand the FimH C-terminal residue Thr158 intrudes into the mannose-binding pocket and (ii) ethylenediaminetetraacetic acid interacts strongly with Glu50, Thr53 and Asn136, in spite of multiple dialysis and purification steps. Upon mutation, pre-ligand-binding relaxation of the backbone dihedral angles at position 137 in the tyrosine gate and their coupling to Tyr48 via the interiorly located Ile52 form the basis of the loss of affinity of the FimH adhesin in the Y137A mutant. International Union of Crystallography 2017-01-01 /pmc/articles/PMC5331462/ /pubmed/28250938 http://dx.doi.org/10.1107/S2052252516016675 Text en © Said Rabbani et al. 2017 http://creativecommons.org/licenses/by/2.0/uk/ This is an open-access article distributed under the terms of the Creative Commons Attribution (CC-BY) Licence, which permits unrestricted use, distribution, and reproduction in any medium, provided the original authors and source are cited.http://creativecommons.org/licenses/by/2.0/uk/
spellingShingle Research Papers
Rabbani, Said
Krammer, Eva-Maria
Roos, Goedele
Zalewski, Adam
Preston, Roland
Eid, Sameh
Zihlmann, Pascal
Prévost, Martine
Lensink, Marc F.
Thompson, Andrew
Ernst, Beat
Bouckaert, Julie
Mutation of Tyr137 of the universal Escherichia coli fimbrial adhesin FimH relaxes the tyrosine gate prior to mannose binding
title Mutation of Tyr137 of the universal Escherichia coli fimbrial adhesin FimH relaxes the tyrosine gate prior to mannose binding
title_full Mutation of Tyr137 of the universal Escherichia coli fimbrial adhesin FimH relaxes the tyrosine gate prior to mannose binding
title_fullStr Mutation of Tyr137 of the universal Escherichia coli fimbrial adhesin FimH relaxes the tyrosine gate prior to mannose binding
title_full_unstemmed Mutation of Tyr137 of the universal Escherichia coli fimbrial adhesin FimH relaxes the tyrosine gate prior to mannose binding
title_short Mutation of Tyr137 of the universal Escherichia coli fimbrial adhesin FimH relaxes the tyrosine gate prior to mannose binding
title_sort mutation of tyr137 of the universal escherichia coli fimbrial adhesin fimh relaxes the tyrosine gate prior to mannose binding
topic Research Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5331462/
https://www.ncbi.nlm.nih.gov/pubmed/28250938
http://dx.doi.org/10.1107/S2052252516016675
work_keys_str_mv AT rabbanisaid mutationoftyr137oftheuniversalescherichiacolifimbrialadhesinfimhrelaxesthetyrosinegatepriortomannosebinding
AT krammerevamaria mutationoftyr137oftheuniversalescherichiacolifimbrialadhesinfimhrelaxesthetyrosinegatepriortomannosebinding
AT roosgoedele mutationoftyr137oftheuniversalescherichiacolifimbrialadhesinfimhrelaxesthetyrosinegatepriortomannosebinding
AT zalewskiadam mutationoftyr137oftheuniversalescherichiacolifimbrialadhesinfimhrelaxesthetyrosinegatepriortomannosebinding
AT prestonroland mutationoftyr137oftheuniversalescherichiacolifimbrialadhesinfimhrelaxesthetyrosinegatepriortomannosebinding
AT eidsameh mutationoftyr137oftheuniversalescherichiacolifimbrialadhesinfimhrelaxesthetyrosinegatepriortomannosebinding
AT zihlmannpascal mutationoftyr137oftheuniversalescherichiacolifimbrialadhesinfimhrelaxesthetyrosinegatepriortomannosebinding
AT prevostmartine mutationoftyr137oftheuniversalescherichiacolifimbrialadhesinfimhrelaxesthetyrosinegatepriortomannosebinding
AT lensinkmarcf mutationoftyr137oftheuniversalescherichiacolifimbrialadhesinfimhrelaxesthetyrosinegatepriortomannosebinding
AT thompsonandrew mutationoftyr137oftheuniversalescherichiacolifimbrialadhesinfimhrelaxesthetyrosinegatepriortomannosebinding
AT ernstbeat mutationoftyr137oftheuniversalescherichiacolifimbrialadhesinfimhrelaxesthetyrosinegatepriortomannosebinding
AT bouckaertjulie mutationoftyr137oftheuniversalescherichiacolifimbrialadhesinfimhrelaxesthetyrosinegatepriortomannosebinding