A novel extracellular metallopeptidase domain shared by animal host-associated mutualistic and pathogenic microbes.

The mucosal microbiota is recognised as an important factor for our health, with many disease states linked to imbalances in the normal community structure. Hence, there is considerable interest in identifying the molecular basis of human-microbe interactions. In this work we investigated the capaci...

Full description

Bibliographic Details
Main Authors: Sirintra Nakjang, Didier A Ndeh, Anil Wipat, David N Bolam, Robert P Hirt
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2012-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3267712?pdf=render
id doaj-ed84150ce8bb47a19d71f97d03c6431b
record_format Article
spelling doaj-ed84150ce8bb47a19d71f97d03c6431b2020-11-25T00:02:20ZengPublic Library of Science (PLoS)PLoS ONE1932-62032012-01-0171e3028710.1371/journal.pone.0030287A novel extracellular metallopeptidase domain shared by animal host-associated mutualistic and pathogenic microbes.Sirintra NakjangDidier A NdehAnil WipatDavid N BolamRobert P HirtThe mucosal microbiota is recognised as an important factor for our health, with many disease states linked to imbalances in the normal community structure. Hence, there is considerable interest in identifying the molecular basis of human-microbe interactions. In this work we investigated the capacity of microbes to thrive on mucosal surfaces, either as mutualists, commensals or pathogens, using comparative genomics to identify co-occurring molecular traits. We identified a novel domain we named M60-like/PF13402 (new Pfam entry PF13402), which was detected mainly among proteins from animal host mucosa-associated prokaryotic and eukaryotic microbes ranging from mutualists to pathogens. Lateral gene transfers between distantly related microbes explained their shared M60-like/PF13402 domain. The novel domain is characterised by a zinc-metallopeptidase-like motif and is distantly related to known viral enhancin zinc-metallopeptidases. Signal peptides and/or cell surface anchoring features were detected in most microbial M60-like/PF13402 domain-containing proteins, indicating that these proteins target an extracellular substrate. A significant subset of these putative peptidases was further characterised by the presence of associated domains belonging to carbohydrate-binding module family 5/12, 32 and 51 and other glycan-binding domains, suggesting that these novel proteases are targeted to complex glycoproteins such as mucins. An in vitro mucinase assay demonstrated degradation of mammalian mucins by a recombinant form of an M60-like/PF13402-containing protein from the gut mutualist Bacteroides thetaiotaomicron. This study reveals that M60-like domains are peptidases targeting host glycoproteins. These peptidases likely play an important role in successful colonisation of both vertebrate mucosal surfaces and the invertebrate digestive tract by both mutualistic and pathogenic microbes. Moreover, 141 entries across various peptidase families described in the MEROPS database were also identified with carbohydrate-binding modules defining a new functional context for these glycan-binding domains and providing opportunities to engineer proteases targeting specific glycoproteins for both biomedical and industrial applications.http://europepmc.org/articles/PMC3267712?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Sirintra Nakjang
Didier A Ndeh
Anil Wipat
David N Bolam
Robert P Hirt
spellingShingle Sirintra Nakjang
Didier A Ndeh
Anil Wipat
David N Bolam
Robert P Hirt
A novel extracellular metallopeptidase domain shared by animal host-associated mutualistic and pathogenic microbes.
PLoS ONE
author_facet Sirintra Nakjang
Didier A Ndeh
Anil Wipat
David N Bolam
Robert P Hirt
author_sort Sirintra Nakjang
title A novel extracellular metallopeptidase domain shared by animal host-associated mutualistic and pathogenic microbes.
title_short A novel extracellular metallopeptidase domain shared by animal host-associated mutualistic and pathogenic microbes.
title_full A novel extracellular metallopeptidase domain shared by animal host-associated mutualistic and pathogenic microbes.
title_fullStr A novel extracellular metallopeptidase domain shared by animal host-associated mutualistic and pathogenic microbes.
title_full_unstemmed A novel extracellular metallopeptidase domain shared by animal host-associated mutualistic and pathogenic microbes.
title_sort novel extracellular metallopeptidase domain shared by animal host-associated mutualistic and pathogenic microbes.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2012-01-01
description The mucosal microbiota is recognised as an important factor for our health, with many disease states linked to imbalances in the normal community structure. Hence, there is considerable interest in identifying the molecular basis of human-microbe interactions. In this work we investigated the capacity of microbes to thrive on mucosal surfaces, either as mutualists, commensals or pathogens, using comparative genomics to identify co-occurring molecular traits. We identified a novel domain we named M60-like/PF13402 (new Pfam entry PF13402), which was detected mainly among proteins from animal host mucosa-associated prokaryotic and eukaryotic microbes ranging from mutualists to pathogens. Lateral gene transfers between distantly related microbes explained their shared M60-like/PF13402 domain. The novel domain is characterised by a zinc-metallopeptidase-like motif and is distantly related to known viral enhancin zinc-metallopeptidases. Signal peptides and/or cell surface anchoring features were detected in most microbial M60-like/PF13402 domain-containing proteins, indicating that these proteins target an extracellular substrate. A significant subset of these putative peptidases was further characterised by the presence of associated domains belonging to carbohydrate-binding module family 5/12, 32 and 51 and other glycan-binding domains, suggesting that these novel proteases are targeted to complex glycoproteins such as mucins. An in vitro mucinase assay demonstrated degradation of mammalian mucins by a recombinant form of an M60-like/PF13402-containing protein from the gut mutualist Bacteroides thetaiotaomicron. This study reveals that M60-like domains are peptidases targeting host glycoproteins. These peptidases likely play an important role in successful colonisation of both vertebrate mucosal surfaces and the invertebrate digestive tract by both mutualistic and pathogenic microbes. Moreover, 141 entries across various peptidase families described in the MEROPS database were also identified with carbohydrate-binding modules defining a new functional context for these glycan-binding domains and providing opportunities to engineer proteases targeting specific glycoproteins for both biomedical and industrial applications.
url http://europepmc.org/articles/PMC3267712?pdf=render
work_keys_str_mv AT sirintranakjang anovelextracellularmetallopeptidasedomainsharedbyanimalhostassociatedmutualisticandpathogenicmicrobes
AT didierandeh anovelextracellularmetallopeptidasedomainsharedbyanimalhostassociatedmutualisticandpathogenicmicrobes
AT anilwipat anovelextracellularmetallopeptidasedomainsharedbyanimalhostassociatedmutualisticandpathogenicmicrobes
AT davidnbolam anovelextracellularmetallopeptidasedomainsharedbyanimalhostassociatedmutualisticandpathogenicmicrobes
AT robertphirt anovelextracellularmetallopeptidasedomainsharedbyanimalhostassociatedmutualisticandpathogenicmicrobes
AT sirintranakjang novelextracellularmetallopeptidasedomainsharedbyanimalhostassociatedmutualisticandpathogenicmicrobes
AT didierandeh novelextracellularmetallopeptidasedomainsharedbyanimalhostassociatedmutualisticandpathogenicmicrobes
AT anilwipat novelextracellularmetallopeptidasedomainsharedbyanimalhostassociatedmutualisticandpathogenicmicrobes
AT davidnbolam novelextracellularmetallopeptidasedomainsharedbyanimalhostassociatedmutualisticandpathogenicmicrobes
AT robertphirt novelextracellularmetallopeptidasedomainsharedbyanimalhostassociatedmutualisticandpathogenicmicrobes
_version_ 1725438269133422592