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Crystal Structure and Activity Studies of the C11 Cysteine Peptidase from Parabacteroides merdae in the Human Gut Microbiome

Clan CD cysteine peptidases, a structurally related group of peptidases that include mammalian caspases, exhibit a wide range of important functions, along with a variety of specificities and activation mechanisms. However, for the clostripain family (denoted C11), little is currently known. Here, w...

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Autores principales: McLuskey, Karen, Grewal, Jaspreet S., Das, Debanu, Godzik, Adam, Lesley, Scott A., Deacon, Ashley M., Coombs, Graham H., Elsliger, Marc-André, Wilson, Ian A., Mottram, Jeremy C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4850288/
https://www.ncbi.nlm.nih.gov/pubmed/26940874
http://dx.doi.org/10.1074/jbc.M115.706143
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author McLuskey, Karen
Grewal, Jaspreet S.
Das, Debanu
Godzik, Adam
Lesley, Scott A.
Deacon, Ashley M.
Coombs, Graham H.
Elsliger, Marc-André
Wilson, Ian A.
Mottram, Jeremy C.
author_facet McLuskey, Karen
Grewal, Jaspreet S.
Das, Debanu
Godzik, Adam
Lesley, Scott A.
Deacon, Ashley M.
Coombs, Graham H.
Elsliger, Marc-André
Wilson, Ian A.
Mottram, Jeremy C.
author_sort McLuskey, Karen
collection PubMed
description Clan CD cysteine peptidases, a structurally related group of peptidases that include mammalian caspases, exhibit a wide range of important functions, along with a variety of specificities and activation mechanisms. However, for the clostripain family (denoted C11), little is currently known. Here, we describe the first crystal structure of a C11 protein from the human gut bacterium, Parabacteroides merdae (PmC11), determined to 1.7-Å resolution. PmC11 is a monomeric cysteine peptidase that comprises an extended caspase-like α/β/α sandwich and an unusual C-terminal domain. It shares core structural elements with clan CD cysteine peptidases but otherwise structurally differs from the other families in the clan. These studies also revealed a well ordered break in the polypeptide chain at Lys(147), resulting in a large conformational rearrangement close to the active site. Biochemical and kinetic analysis revealed Lys(147) to be an intramolecular processing site at which cleavage is required for full activation of the enzyme, suggesting an autoinhibitory mechanism for self-preservation. PmC11 has an acidic binding pocket and a preference for basic substrates, and accepts substrates with Arg and Lys in P1 and does not require Ca(2+) for activity. Collectively, these data provide insights into the mechanism and activity of PmC11 and a detailed framework for studies on C11 peptidases from other phylogenetic kingdoms.
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spelling pubmed-48502882016-05-09 Crystal Structure and Activity Studies of the C11 Cysteine Peptidase from Parabacteroides merdae in the Human Gut Microbiome McLuskey, Karen Grewal, Jaspreet S. Das, Debanu Godzik, Adam Lesley, Scott A. Deacon, Ashley M. Coombs, Graham H. Elsliger, Marc-André Wilson, Ian A. Mottram, Jeremy C. J Biol Chem Microbiology Clan CD cysteine peptidases, a structurally related group of peptidases that include mammalian caspases, exhibit a wide range of important functions, along with a variety of specificities and activation mechanisms. However, for the clostripain family (denoted C11), little is currently known. Here, we describe the first crystal structure of a C11 protein from the human gut bacterium, Parabacteroides merdae (PmC11), determined to 1.7-Å resolution. PmC11 is a monomeric cysteine peptidase that comprises an extended caspase-like α/β/α sandwich and an unusual C-terminal domain. It shares core structural elements with clan CD cysteine peptidases but otherwise structurally differs from the other families in the clan. These studies also revealed a well ordered break in the polypeptide chain at Lys(147), resulting in a large conformational rearrangement close to the active site. Biochemical and kinetic analysis revealed Lys(147) to be an intramolecular processing site at which cleavage is required for full activation of the enzyme, suggesting an autoinhibitory mechanism for self-preservation. PmC11 has an acidic binding pocket and a preference for basic substrates, and accepts substrates with Arg and Lys in P1 and does not require Ca(2+) for activity. Collectively, these data provide insights into the mechanism and activity of PmC11 and a detailed framework for studies on C11 peptidases from other phylogenetic kingdoms. American Society for Biochemistry and Molecular Biology 2016-04-29 2016-03-03 /pmc/articles/PMC4850288/ /pubmed/26940874 http://dx.doi.org/10.1074/jbc.M115.706143 Text en © 2016 by The American Society for Biochemistry and Molecular Biology, Inc. Author's Choice—Final version free via Creative Commons CC-BY license (http://creativecommons.org/licenses/by/4.0) .
spellingShingle Microbiology
McLuskey, Karen
Grewal, Jaspreet S.
Das, Debanu
Godzik, Adam
Lesley, Scott A.
Deacon, Ashley M.
Coombs, Graham H.
Elsliger, Marc-André
Wilson, Ian A.
Mottram, Jeremy C.
Crystal Structure and Activity Studies of the C11 Cysteine Peptidase from Parabacteroides merdae in the Human Gut Microbiome
title Crystal Structure and Activity Studies of the C11 Cysteine Peptidase from Parabacteroides merdae in the Human Gut Microbiome
title_full Crystal Structure and Activity Studies of the C11 Cysteine Peptidase from Parabacteroides merdae in the Human Gut Microbiome
title_fullStr Crystal Structure and Activity Studies of the C11 Cysteine Peptidase from Parabacteroides merdae in the Human Gut Microbiome
title_full_unstemmed Crystal Structure and Activity Studies of the C11 Cysteine Peptidase from Parabacteroides merdae in the Human Gut Microbiome
title_short Crystal Structure and Activity Studies of the C11 Cysteine Peptidase from Parabacteroides merdae in the Human Gut Microbiome
title_sort crystal structure and activity studies of the c11 cysteine peptidase from parabacteroides merdae in the human gut microbiome
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4850288/
https://www.ncbi.nlm.nih.gov/pubmed/26940874
http://dx.doi.org/10.1074/jbc.M115.706143
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