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Streptococcus suis sortase A is Ca(2+) independent and is inhibited by acteoside, isoquercitrin and baicalin

Sortase A (SrtA) has long been recognized as an ideal drug target for therapeutic agents against Gram-positive pathogens. However, the SrtA of Streptococcus suis (Ss-SrtA), an important zoonotic agent, has not been studied. In this study, the enzymatic properties of Ss-SrtA were investigated, and in...

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Autores principales: Chen, Fuguang, Xie, Fang, Yang, Baoling, Wang, Chengcheng, Liu, Siguo, Zhang, Yueling
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5358767/
https://www.ncbi.nlm.nih.gov/pubmed/28319184
http://dx.doi.org/10.1371/journal.pone.0173767
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author Chen, Fuguang
Xie, Fang
Yang, Baoling
Wang, Chengcheng
Liu, Siguo
Zhang, Yueling
author_facet Chen, Fuguang
Xie, Fang
Yang, Baoling
Wang, Chengcheng
Liu, Siguo
Zhang, Yueling
author_sort Chen, Fuguang
collection PubMed
description Sortase A (SrtA) has long been recognized as an ideal drug target for therapeutic agents against Gram-positive pathogens. However, the SrtA of Streptococcus suis (Ss-SrtA), an important zoonotic agent, has not been studied. In this study, the enzymatic properties of Ss-SrtA were investigated, and inhibition of Ss-SrtA by natural products was evaluated. Ss-SrtA was expressed and purified. The purified recombinant Ss-SrtA had maximal activity at pH 6.0–7.5, 45°C, and showed a Km of 6.7 μM for the hydrolysis of substrate abz-LPATG-dnp. Different from Staphylococcus aureus SrtA (Sa-SrtA) which is stimulated by Ca(2+), Ss-SrtA was observed to be Ca(2+) independent. Structural analysis showed that salt bridges formed between K111 and D180 in Ss-SrtA replaced the function of Ca(2+) in Sa-SrtA to stabilize the substrate-binding cleft. Site-directed mutagenesis identified H126, C192 and R200 as the key residues of Ss-SrtA active site. To discover potential inhibitors, the percent inhibition of sortase activity by natural products was measured. Among these selected natural products, acteoside, isoquercitrin and baicalin were discovered as novel SrtA inhibitors, with IC(50) values of 36.3 ± 1.3 μM, 100.0 ± 1.3 μM and 85.4 ± 1.5 μM, respectively. The inhibitory effects of these three natural products were further confirmed on endogenous Sa-SrtA. Using a previously established S. aureus model with a fluorescent-labeled Sa-SrtA substrate, acteoside, isoquercitrin, and baicalin showed 86%, 28% and 45% inhibition on endogenous Sa-SrtA activity, respectively. Overall, these findings shed new light on enzymatic properties, Ca(2+)-independent catalytic mechanism and potential inhibitors of Ss-SrtA.
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spelling pubmed-53587672017-04-06 Streptococcus suis sortase A is Ca(2+) independent and is inhibited by acteoside, isoquercitrin and baicalin Chen, Fuguang Xie, Fang Yang, Baoling Wang, Chengcheng Liu, Siguo Zhang, Yueling PLoS One Research Article Sortase A (SrtA) has long been recognized as an ideal drug target for therapeutic agents against Gram-positive pathogens. However, the SrtA of Streptococcus suis (Ss-SrtA), an important zoonotic agent, has not been studied. In this study, the enzymatic properties of Ss-SrtA were investigated, and inhibition of Ss-SrtA by natural products was evaluated. Ss-SrtA was expressed and purified. The purified recombinant Ss-SrtA had maximal activity at pH 6.0–7.5, 45°C, and showed a Km of 6.7 μM for the hydrolysis of substrate abz-LPATG-dnp. Different from Staphylococcus aureus SrtA (Sa-SrtA) which is stimulated by Ca(2+), Ss-SrtA was observed to be Ca(2+) independent. Structural analysis showed that salt bridges formed between K111 and D180 in Ss-SrtA replaced the function of Ca(2+) in Sa-SrtA to stabilize the substrate-binding cleft. Site-directed mutagenesis identified H126, C192 and R200 as the key residues of Ss-SrtA active site. To discover potential inhibitors, the percent inhibition of sortase activity by natural products was measured. Among these selected natural products, acteoside, isoquercitrin and baicalin were discovered as novel SrtA inhibitors, with IC(50) values of 36.3 ± 1.3 μM, 100.0 ± 1.3 μM and 85.4 ± 1.5 μM, respectively. The inhibitory effects of these three natural products were further confirmed on endogenous Sa-SrtA. Using a previously established S. aureus model with a fluorescent-labeled Sa-SrtA substrate, acteoside, isoquercitrin, and baicalin showed 86%, 28% and 45% inhibition on endogenous Sa-SrtA activity, respectively. Overall, these findings shed new light on enzymatic properties, Ca(2+)-independent catalytic mechanism and potential inhibitors of Ss-SrtA. Public Library of Science 2017-03-20 /pmc/articles/PMC5358767/ /pubmed/28319184 http://dx.doi.org/10.1371/journal.pone.0173767 Text en © 2017 Chen 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Chen, Fuguang
Xie, Fang
Yang, Baoling
Wang, Chengcheng
Liu, Siguo
Zhang, Yueling
Streptococcus suis sortase A is Ca(2+) independent and is inhibited by acteoside, isoquercitrin and baicalin
title Streptococcus suis sortase A is Ca(2+) independent and is inhibited by acteoside, isoquercitrin and baicalin
title_full Streptococcus suis sortase A is Ca(2+) independent and is inhibited by acteoside, isoquercitrin and baicalin
title_fullStr Streptococcus suis sortase A is Ca(2+) independent and is inhibited by acteoside, isoquercitrin and baicalin
title_full_unstemmed Streptococcus suis sortase A is Ca(2+) independent and is inhibited by acteoside, isoquercitrin and baicalin
title_short Streptococcus suis sortase A is Ca(2+) independent and is inhibited by acteoside, isoquercitrin and baicalin
title_sort streptococcus suis sortase a is ca(2+) independent and is inhibited by acteoside, isoquercitrin and baicalin
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5358767/
https://www.ncbi.nlm.nih.gov/pubmed/28319184
http://dx.doi.org/10.1371/journal.pone.0173767
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