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Structure of the γ-d-glutamyl-l-diamino acid endopeptidase YkfC from Bacillus cereus in complex with l-Ala-γ-d-Glu: insights into substrate recognition by NlpC/P60 cysteine peptidases
Dipeptidyl-peptidase VI from Bacillus sphaericus and YkfC from Bacillus subtilis have both previously been characterized as highly specific γ-d-glutamyl-l-diamino acid endopeptidases. The crystal structure of a YkfC ortholog from Bacillus cereus (BcYkfC) at 1.8 Å resolution revealed that it contain...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
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Formato: | Texto |
Lenguaje: | English |
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International Union of Crystallography
2010
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2954226/ https://www.ncbi.nlm.nih.gov/pubmed/20944232 http://dx.doi.org/10.1107/S1744309110021214 |
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author | Xu, Qingping Abdubek, Polat Astakhova, Tamara Axelrod, Herbert L. Bakolitsa, Constantina Cai, Xiaohui Carlton, Dennis Chen, Connie Chiu, Hsiu-Ju Chiu, Michelle Clayton, Thomas Das, Debanu Deller, Marc C. Duan, Lian Ellrott, Kyle Farr, Carol L. Feuerhelm, Julie Grant, Joanna C. Grzechnik, Anna Han, Gye Won Jaroszewski, Lukasz Jin, Kevin K. Klock, Heath E. Knuth, Mark W. Kozbial, Piotr Krishna, S. Sri Kumar, Abhinav Lam, Winnie W. Marciano, David Miller, Mitchell D. Morse, Andrew T. Nigoghossian, Edward Nopakun, Amanda Okach, Linda Puckett, Christina Reyes, Ron Tien, Henry J. Trame, Christine B. van den Bedem, Henry Weekes, Dana Wooten, Tiffany Yeh, Andrew Hodgson, Keith O. Wooley, John Elsliger, Marc-André Deacon, Ashley M. Godzik, Adam Lesley, Scott A. Wilson, Ian A. |
author_facet | Xu, Qingping Abdubek, Polat Astakhova, Tamara Axelrod, Herbert L. Bakolitsa, Constantina Cai, Xiaohui Carlton, Dennis Chen, Connie Chiu, Hsiu-Ju Chiu, Michelle Clayton, Thomas Das, Debanu Deller, Marc C. Duan, Lian Ellrott, Kyle Farr, Carol L. Feuerhelm, Julie Grant, Joanna C. Grzechnik, Anna Han, Gye Won Jaroszewski, Lukasz Jin, Kevin K. Klock, Heath E. Knuth, Mark W. Kozbial, Piotr Krishna, S. Sri Kumar, Abhinav Lam, Winnie W. Marciano, David Miller, Mitchell D. Morse, Andrew T. Nigoghossian, Edward Nopakun, Amanda Okach, Linda Puckett, Christina Reyes, Ron Tien, Henry J. Trame, Christine B. van den Bedem, Henry Weekes, Dana Wooten, Tiffany Yeh, Andrew Hodgson, Keith O. Wooley, John Elsliger, Marc-André Deacon, Ashley M. Godzik, Adam Lesley, Scott A. Wilson, Ian A. |
author_sort | Xu, Qingping |
collection | PubMed |
description | Dipeptidyl-peptidase VI from Bacillus sphaericus and YkfC from Bacillus subtilis have both previously been characterized as highly specific γ-d-glutamyl-l-diamino acid endopeptidases. The crystal structure of a YkfC ortholog from Bacillus cereus (BcYkfC) at 1.8 Å resolution revealed that it contains two N-terminal bacterial SH3 (SH3b) domains in addition to the C-terminal catalytic NlpC/P60 domain that is ubiquitous in the very large family of cell-wall-related cysteine peptidases. A bound reaction product (l-Ala-γ-d-Glu) enabled the identification of conserved sequence and structural signatures for recognition of l-Ala and γ-d-Glu and, therefore, provides a clear framework for understanding the substrate specificity observed in dipeptidyl-peptidase VI, YkfC and other NlpC/P60 domains in general. The first SH3b domain plays an important role in defining substrate specificity by contributing to the formation of the active site, such that only murein peptides with a free N-terminal alanine are allowed. A conserved tyrosine in the SH3b domain of the YkfC subfamily is correlated with the presence of a conserved acidic residue in the NlpC/P60 domain and both residues interact with the free amine group of the alanine. This structural feature allows the definition of a subfamily of NlpC/P60 enzymes with the same N-terminal substrate requirements, including a previously characterized cyanobacterial l-alanine-γ-d-glutamate endopeptidase that contains the two key components (an NlpC/P60 domain attached to an SH3b domain) for assembly of a YkfC-like active site. |
format | Text |
id | pubmed-2954226 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2010 |
publisher | International Union of Crystallography |
record_format | MEDLINE/PubMed |
spelling | pubmed-29542262010-10-27 Structure of the γ-d-glutamyl-l-diamino acid endopeptidase YkfC from Bacillus cereus in complex with l-Ala-γ-d-Glu: insights into substrate recognition by NlpC/P60 cysteine peptidases Xu, Qingping Abdubek, Polat Astakhova, Tamara Axelrod, Herbert L. Bakolitsa, Constantina Cai, Xiaohui Carlton, Dennis Chen, Connie Chiu, Hsiu-Ju Chiu, Michelle Clayton, Thomas Das, Debanu Deller, Marc C. Duan, Lian Ellrott, Kyle Farr, Carol L. Feuerhelm, Julie Grant, Joanna C. Grzechnik, Anna Han, Gye Won Jaroszewski, Lukasz Jin, Kevin K. Klock, Heath E. Knuth, Mark W. Kozbial, Piotr Krishna, S. Sri Kumar, Abhinav Lam, Winnie W. Marciano, David Miller, Mitchell D. Morse, Andrew T. Nigoghossian, Edward Nopakun, Amanda Okach, Linda Puckett, Christina Reyes, Ron Tien, Henry J. Trame, Christine B. van den Bedem, Henry Weekes, Dana Wooten, Tiffany Yeh, Andrew Hodgson, Keith O. Wooley, John Elsliger, Marc-André Deacon, Ashley M. Godzik, Adam Lesley, Scott A. Wilson, Ian A. Acta Crystallogr Sect F Struct Biol Cryst Commun Ligands That Aid in Function Characterization Dipeptidyl-peptidase VI from Bacillus sphaericus and YkfC from Bacillus subtilis have both previously been characterized as highly specific γ-d-glutamyl-l-diamino acid endopeptidases. The crystal structure of a YkfC ortholog from Bacillus cereus (BcYkfC) at 1.8 Å resolution revealed that it contains two N-terminal bacterial SH3 (SH3b) domains in addition to the C-terminal catalytic NlpC/P60 domain that is ubiquitous in the very large family of cell-wall-related cysteine peptidases. A bound reaction product (l-Ala-γ-d-Glu) enabled the identification of conserved sequence and structural signatures for recognition of l-Ala and γ-d-Glu and, therefore, provides a clear framework for understanding the substrate specificity observed in dipeptidyl-peptidase VI, YkfC and other NlpC/P60 domains in general. The first SH3b domain plays an important role in defining substrate specificity by contributing to the formation of the active site, such that only murein peptides with a free N-terminal alanine are allowed. A conserved tyrosine in the SH3b domain of the YkfC subfamily is correlated with the presence of a conserved acidic residue in the NlpC/P60 domain and both residues interact with the free amine group of the alanine. This structural feature allows the definition of a subfamily of NlpC/P60 enzymes with the same N-terminal substrate requirements, including a previously characterized cyanobacterial l-alanine-γ-d-glutamate endopeptidase that contains the two key components (an NlpC/P60 domain attached to an SH3b domain) for assembly of a YkfC-like active site. International Union of Crystallography 2010-07-27 /pmc/articles/PMC2954226/ /pubmed/20944232 http://dx.doi.org/10.1107/S1744309110021214 Text en © Xu et al. 2010 http://creativecommons.org/licenses/by/2.0/uk/ This is an open-access article distributed under the terms of the Creative Commons Attribution Licence, which permits unrestricted use, distribution, and reproduction in any medium, provided the original authors and source are cited. |
spellingShingle | Ligands That Aid in Function Characterization Xu, Qingping Abdubek, Polat Astakhova, Tamara Axelrod, Herbert L. Bakolitsa, Constantina Cai, Xiaohui Carlton, Dennis Chen, Connie Chiu, Hsiu-Ju Chiu, Michelle Clayton, Thomas Das, Debanu Deller, Marc C. Duan, Lian Ellrott, Kyle Farr, Carol L. Feuerhelm, Julie Grant, Joanna C. Grzechnik, Anna Han, Gye Won Jaroszewski, Lukasz Jin, Kevin K. Klock, Heath E. Knuth, Mark W. Kozbial, Piotr Krishna, S. Sri Kumar, Abhinav Lam, Winnie W. Marciano, David Miller, Mitchell D. Morse, Andrew T. Nigoghossian, Edward Nopakun, Amanda Okach, Linda Puckett, Christina Reyes, Ron Tien, Henry J. Trame, Christine B. van den Bedem, Henry Weekes, Dana Wooten, Tiffany Yeh, Andrew Hodgson, Keith O. Wooley, John Elsliger, Marc-André Deacon, Ashley M. Godzik, Adam Lesley, Scott A. Wilson, Ian A. Structure of the γ-d-glutamyl-l-diamino acid endopeptidase YkfC from Bacillus cereus in complex with l-Ala-γ-d-Glu: insights into substrate recognition by NlpC/P60 cysteine peptidases |
title | Structure of the γ-d-glutamyl-l-diamino acid endopeptidase YkfC from Bacillus cereus in complex with l-Ala-γ-d-Glu: insights into substrate recognition by NlpC/P60 cysteine peptidases |
title_full | Structure of the γ-d-glutamyl-l-diamino acid endopeptidase YkfC from Bacillus cereus in complex with l-Ala-γ-d-Glu: insights into substrate recognition by NlpC/P60 cysteine peptidases |
title_fullStr | Structure of the γ-d-glutamyl-l-diamino acid endopeptidase YkfC from Bacillus cereus in complex with l-Ala-γ-d-Glu: insights into substrate recognition by NlpC/P60 cysteine peptidases |
title_full_unstemmed | Structure of the γ-d-glutamyl-l-diamino acid endopeptidase YkfC from Bacillus cereus in complex with l-Ala-γ-d-Glu: insights into substrate recognition by NlpC/P60 cysteine peptidases |
title_short | Structure of the γ-d-glutamyl-l-diamino acid endopeptidase YkfC from Bacillus cereus in complex with l-Ala-γ-d-Glu: insights into substrate recognition by NlpC/P60 cysteine peptidases |
title_sort | structure of the γ-d-glutamyl-l-diamino acid endopeptidase ykfc from bacillus cereus in complex with l-ala-γ-d-glu: insights into substrate recognition by nlpc/p60 cysteine peptidases |
topic | Ligands That Aid in Function Characterization |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2954226/ https://www.ncbi.nlm.nih.gov/pubmed/20944232 http://dx.doi.org/10.1107/S1744309110021214 |
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