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Structural and Biochemical Characterization Reveals LysGH15 as an Unprecedented “EF-Hand-Like” Calcium-Binding Phage Lysin

The lysin LysGH15, which is derived from the staphylococcal phage GH15, demonstrates a wide lytic spectrum and strong lytic activity against methicillin-resistant Staphylococcus aureus (MRSA). Here, we find that the lytic activity of the full-length LysGH15 and its CHAP domain is dependent on calciu...

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Autores principales: Gu, Jingmin, Feng, Yingang, Feng, Xin, Sun, Changjiang, Lei, Liancheng, Ding, Wei, Niu, Fengfeng, Jiao, Lianying, Yang, Mei, Li, Yue, Liu, Xiaohe, Song, Jun, Cui, Ziyin, Han, Dong, Du, Chongtao, Yang, Yongjun, Ouyang, Songying, Liu, Zhi-Jie, Han, Wenyu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4022735/
https://www.ncbi.nlm.nih.gov/pubmed/24831957
http://dx.doi.org/10.1371/journal.ppat.1004109
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author Gu, Jingmin
Feng, Yingang
Feng, Xin
Sun, Changjiang
Lei, Liancheng
Ding, Wei
Niu, Fengfeng
Jiao, Lianying
Yang, Mei
Li, Yue
Liu, Xiaohe
Song, Jun
Cui, Ziyin
Han, Dong
Du, Chongtao
Yang, Yongjun
Ouyang, Songying
Liu, Zhi-Jie
Han, Wenyu
author_facet Gu, Jingmin
Feng, Yingang
Feng, Xin
Sun, Changjiang
Lei, Liancheng
Ding, Wei
Niu, Fengfeng
Jiao, Lianying
Yang, Mei
Li, Yue
Liu, Xiaohe
Song, Jun
Cui, Ziyin
Han, Dong
Du, Chongtao
Yang, Yongjun
Ouyang, Songying
Liu, Zhi-Jie
Han, Wenyu
author_sort Gu, Jingmin
collection PubMed
description The lysin LysGH15, which is derived from the staphylococcal phage GH15, demonstrates a wide lytic spectrum and strong lytic activity against methicillin-resistant Staphylococcus aureus (MRSA). Here, we find that the lytic activity of the full-length LysGH15 and its CHAP domain is dependent on calcium ions. To elucidate the molecular mechanism, the structures of three individual domains of LysGH15 were determined. Unexpectedly, the crystal structure of the LysGH15 CHAP domain reveals an “EF-hand-like” calcium-binding site near the Cys-His-Glu-Asn quartet active site groove. To date, the calcium-binding site in the LysGH15 CHAP domain is unique among homologous proteins, and it represents the first reported calcium-binding site in the CHAP family. More importantly, the calcium ion plays an important role as a switch that modulates the CHAP domain between the active and inactive states. Structure-guided mutagenesis of the amidase-2 domain reveals that both the zinc ion and E282 are required in catalysis and enable us to propose a catalytic mechanism. Nuclear magnetic resonance (NMR) spectroscopy and titration-guided mutagenesis identify residues (e.g., N404, Y406, G407, and T408) in the SH3b domain that are involved in the interactions with the substrate. To the best of our knowledge, our results constitute the first structural information on the biochemical features of a staphylococcal phage lysin and represent a pivotal step forward in understanding this type of lysin.
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spelling pubmed-40227352014-05-21 Structural and Biochemical Characterization Reveals LysGH15 as an Unprecedented “EF-Hand-Like” Calcium-Binding Phage Lysin Gu, Jingmin Feng, Yingang Feng, Xin Sun, Changjiang Lei, Liancheng Ding, Wei Niu, Fengfeng Jiao, Lianying Yang, Mei Li, Yue Liu, Xiaohe Song, Jun Cui, Ziyin Han, Dong Du, Chongtao Yang, Yongjun Ouyang, Songying Liu, Zhi-Jie Han, Wenyu PLoS Pathog Research Article The lysin LysGH15, which is derived from the staphylococcal phage GH15, demonstrates a wide lytic spectrum and strong lytic activity against methicillin-resistant Staphylococcus aureus (MRSA). Here, we find that the lytic activity of the full-length LysGH15 and its CHAP domain is dependent on calcium ions. To elucidate the molecular mechanism, the structures of three individual domains of LysGH15 were determined. Unexpectedly, the crystal structure of the LysGH15 CHAP domain reveals an “EF-hand-like” calcium-binding site near the Cys-His-Glu-Asn quartet active site groove. To date, the calcium-binding site in the LysGH15 CHAP domain is unique among homologous proteins, and it represents the first reported calcium-binding site in the CHAP family. More importantly, the calcium ion plays an important role as a switch that modulates the CHAP domain between the active and inactive states. Structure-guided mutagenesis of the amidase-2 domain reveals that both the zinc ion and E282 are required in catalysis and enable us to propose a catalytic mechanism. Nuclear magnetic resonance (NMR) spectroscopy and titration-guided mutagenesis identify residues (e.g., N404, Y406, G407, and T408) in the SH3b domain that are involved in the interactions with the substrate. To the best of our knowledge, our results constitute the first structural information on the biochemical features of a staphylococcal phage lysin and represent a pivotal step forward in understanding this type of lysin. Public Library of Science 2014-05-15 /pmc/articles/PMC4022735/ /pubmed/24831957 http://dx.doi.org/10.1371/journal.ppat.1004109 Text en © 2014 Gu et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Gu, Jingmin
Feng, Yingang
Feng, Xin
Sun, Changjiang
Lei, Liancheng
Ding, Wei
Niu, Fengfeng
Jiao, Lianying
Yang, Mei
Li, Yue
Liu, Xiaohe
Song, Jun
Cui, Ziyin
Han, Dong
Du, Chongtao
Yang, Yongjun
Ouyang, Songying
Liu, Zhi-Jie
Han, Wenyu
Structural and Biochemical Characterization Reveals LysGH15 as an Unprecedented “EF-Hand-Like” Calcium-Binding Phage Lysin
title Structural and Biochemical Characterization Reveals LysGH15 as an Unprecedented “EF-Hand-Like” Calcium-Binding Phage Lysin
title_full Structural and Biochemical Characterization Reveals LysGH15 as an Unprecedented “EF-Hand-Like” Calcium-Binding Phage Lysin
title_fullStr Structural and Biochemical Characterization Reveals LysGH15 as an Unprecedented “EF-Hand-Like” Calcium-Binding Phage Lysin
title_full_unstemmed Structural and Biochemical Characterization Reveals LysGH15 as an Unprecedented “EF-Hand-Like” Calcium-Binding Phage Lysin
title_short Structural and Biochemical Characterization Reveals LysGH15 as an Unprecedented “EF-Hand-Like” Calcium-Binding Phage Lysin
title_sort structural and biochemical characterization reveals lysgh15 as an unprecedented “ef-hand-like” calcium-binding phage lysin
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4022735/
https://www.ncbi.nlm.nih.gov/pubmed/24831957
http://dx.doi.org/10.1371/journal.ppat.1004109
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