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Natural product juglone targets three key enzymes from Helicobacter pylori: inhibition assay with crystal structure characterization

AIM: To investigate the inhibition features of the natural product juglone (5-hydroxy-1,4-naphthoquinone) against the three key enzymes from Helicobacter pylori (cystathionine γ-synthase [HpCGS], malonyl-CoA:acyl carrier protein transacylase [HpFabD], and β-hydroxyacyl-ACP dehydratase [HpFabZ]). MET...

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Autores principales: Kong, Yun-hua, Zhang, Liang, Yang, Zheng-yi, Han, Cong, Hu, Li-hong, Jiang, Hua-liang, Shen, Xu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7091819/
https://www.ncbi.nlm.nih.gov/pubmed/18565285
http://dx.doi.org/10.1111/j.1745-7254.2008.00808.x
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author Kong, Yun-hua
Zhang, Liang
Yang, Zheng-yi
Han, Cong
Hu, Li-hong
Jiang, Hua-liang
Shen, Xu
author_facet Kong, Yun-hua
Zhang, Liang
Yang, Zheng-yi
Han, Cong
Hu, Li-hong
Jiang, Hua-liang
Shen, Xu
author_sort Kong, Yun-hua
collection PubMed
description AIM: To investigate the inhibition features of the natural product juglone (5-hydroxy-1,4-naphthoquinone) against the three key enzymes from Helicobacter pylori (cystathionine γ-synthase [HpCGS], malonyl-CoA:acyl carrier protein transacylase [HpFabD], and β-hydroxyacyl-ACP dehydratase [HpFabZ]). METHODS: An enzyme inhibition assay against HpCGS was carried out by using a continuous coupled spectrophotometric assay approach. The inhibition assay of HpFabD was performed based on the α-ketoglutarate dehydrogenase-coupled system, while the inhibition assay for HpFabZ was monitored by detecting the decrease in absorbance at 260 nm with crotonoyl-CoA conversion to β-hydroxybutyryl-CoA. The juglone/FabZ complex crystal was obtained by soaking juglone into the HpFabZ crystal, and the X-ray crystal structure of the complex was analyzed by molecular replacement approach. RESULTS: Juglone was shown to potently inhibit HpCGS, HpFabD, and HpFabZ with the half maximal inhibitory concentration IC(50) values of 7.0±0.7, 20±1, and 30±4 μmol/L, respectively. An inhibition-type study indicated that juglone was a non-competitive inhibitor of HpCGS against O-succinyl-L-homoserine (K(i)=αK(i)=24 μmol/L), an uncompetitive inhibitor of HpFabD against malonyl-CoA (αK(i)=7.4 μmol/L), and a competitive inhibitor of HpFabZ against crotonoyl-CoA (K(i)=6.8 μmol/L). Moreover, the crystal structure of the HpFabZ/juglone complex further revealed the essential binding pattern of juglone against HpFabZ at the atomic level. CONCLUSION: HpCGS, HpFabD, and HpFabZ are potential targets of juglone.
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spelling pubmed-70918192020-03-24 Natural product juglone targets three key enzymes from Helicobacter pylori: inhibition assay with crystal structure characterization Kong, Yun-hua Zhang, Liang Yang, Zheng-yi Han, Cong Hu, Li-hong Jiang, Hua-liang Shen, Xu Acta Pharmacol Sin Article AIM: To investigate the inhibition features of the natural product juglone (5-hydroxy-1,4-naphthoquinone) against the three key enzymes from Helicobacter pylori (cystathionine γ-synthase [HpCGS], malonyl-CoA:acyl carrier protein transacylase [HpFabD], and β-hydroxyacyl-ACP dehydratase [HpFabZ]). METHODS: An enzyme inhibition assay against HpCGS was carried out by using a continuous coupled spectrophotometric assay approach. The inhibition assay of HpFabD was performed based on the α-ketoglutarate dehydrogenase-coupled system, while the inhibition assay for HpFabZ was monitored by detecting the decrease in absorbance at 260 nm with crotonoyl-CoA conversion to β-hydroxybutyryl-CoA. The juglone/FabZ complex crystal was obtained by soaking juglone into the HpFabZ crystal, and the X-ray crystal structure of the complex was analyzed by molecular replacement approach. RESULTS: Juglone was shown to potently inhibit HpCGS, HpFabD, and HpFabZ with the half maximal inhibitory concentration IC(50) values of 7.0±0.7, 20±1, and 30±4 μmol/L, respectively. An inhibition-type study indicated that juglone was a non-competitive inhibitor of HpCGS against O-succinyl-L-homoserine (K(i)=αK(i)=24 μmol/L), an uncompetitive inhibitor of HpFabD against malonyl-CoA (αK(i)=7.4 μmol/L), and a competitive inhibitor of HpFabZ against crotonoyl-CoA (K(i)=6.8 μmol/L). Moreover, the crystal structure of the HpFabZ/juglone complex further revealed the essential binding pattern of juglone against HpFabZ at the atomic level. CONCLUSION: HpCGS, HpFabD, and HpFabZ are potential targets of juglone. Nature Publishing Group UK 2008-07 /pmc/articles/PMC7091819/ /pubmed/18565285 http://dx.doi.org/10.1111/j.1745-7254.2008.00808.x Text en © CPS and SIMM 2008 This article is made available via the PMC Open Access Subset for unrestricted research re-use and secondary analysis in any form or by any means with acknowledgement of the original source. These permissions are granted for the duration of the World Health Organization (WHO) declaration of COVID-19 as a global pandemic.
spellingShingle Article
Kong, Yun-hua
Zhang, Liang
Yang, Zheng-yi
Han, Cong
Hu, Li-hong
Jiang, Hua-liang
Shen, Xu
Natural product juglone targets three key enzymes from Helicobacter pylori: inhibition assay with crystal structure characterization
title Natural product juglone targets three key enzymes from Helicobacter pylori: inhibition assay with crystal structure characterization
title_full Natural product juglone targets three key enzymes from Helicobacter pylori: inhibition assay with crystal structure characterization
title_fullStr Natural product juglone targets three key enzymes from Helicobacter pylori: inhibition assay with crystal structure characterization
title_full_unstemmed Natural product juglone targets three key enzymes from Helicobacter pylori: inhibition assay with crystal structure characterization
title_short Natural product juglone targets three key enzymes from Helicobacter pylori: inhibition assay with crystal structure characterization
title_sort natural product juglone targets three key enzymes from helicobacter pylori: inhibition assay with crystal structure characterization
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7091819/
https://www.ncbi.nlm.nih.gov/pubmed/18565285
http://dx.doi.org/10.1111/j.1745-7254.2008.00808.x
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