Cargando…

Sequence Analysis and Molecular Characterization of Clonorchis sinensis Hexokinase, an Unusual Trimeric 50-kDa Glucose-6-Phosphate-Sensitive Allosteric Enzyme

Clonorchiasis, which is induced by the infection of Clonorchis sinensis (C. sinensis), is highly associated with cholangiocarcinoma. Because the available examination, treatment and interrupting transmission provide limited opportunities to prevent infection, it is urgent to develop integrated strat...

Descripción completa

Detalles Bibliográficos
Autores principales: Chen, Tingjin, Ning, Dan, Sun, Hengchang, Li, Ran, Shang, Mei, Li, Xuerong, Wang, Xiaoyun, Chen, Wenjun, Liang, Chi, Li, Wenfang, Mao, Qiang, Li, Ye, Deng, Chuanhuan, Wang, Lexun, Wu, Zhongdao, Huang, Yan, Xu, Jin, Yu, Xinbing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4169440/
https://www.ncbi.nlm.nih.gov/pubmed/25232723
http://dx.doi.org/10.1371/journal.pone.0107940
_version_ 1782335697059840000
author Chen, Tingjin
Ning, Dan
Sun, Hengchang
Li, Ran
Shang, Mei
Li, Xuerong
Wang, Xiaoyun
Chen, Wenjun
Liang, Chi
Li, Wenfang
Mao, Qiang
Li, Ye
Deng, Chuanhuan
Wang, Lexun
Wu, Zhongdao
Huang, Yan
Xu, Jin
Yu, Xinbing
author_facet Chen, Tingjin
Ning, Dan
Sun, Hengchang
Li, Ran
Shang, Mei
Li, Xuerong
Wang, Xiaoyun
Chen, Wenjun
Liang, Chi
Li, Wenfang
Mao, Qiang
Li, Ye
Deng, Chuanhuan
Wang, Lexun
Wu, Zhongdao
Huang, Yan
Xu, Jin
Yu, Xinbing
author_sort Chen, Tingjin
collection PubMed
description Clonorchiasis, which is induced by the infection of Clonorchis sinensis (C. sinensis), is highly associated with cholangiocarcinoma. Because the available examination, treatment and interrupting transmission provide limited opportunities to prevent infection, it is urgent to develop integrated strategies to prevent and control clonorchiasis. Glycolytic enzymes are crucial molecules for trematode survival and have been targeted for drug development. Hexokinase of C. sinensis (CsHK), the first key regulatory enzyme of the glycolytic pathway, was characterized in this study. The calculated molecular mass (Mr) of CsHK was 50.0 kDa. The obtained recombinant CsHK (rCsHK) was a homotrimer with an Mr of approximately 164 kDa, as determined using native PAGE and gel filtration. The highest activity was obtained with 50 mM glycine-NaOH at pH 10 and 100 mM Tris-HCl at pH 8.5 and 10. The kinetics of rCsHK has a moderate thermal stability. Compared to that of the corresponding negative control, the enzymatic activity was significantly inhibited by praziquantel (PZQ) and anti-rCsHK serum. rCsHK was homotropically and allosterically activated by its substrates, including glucose, mannose, fructose, and ATP. ADP exhibited mixed allosteric effect on rCsHK with respect to ATP, while inorganic pyrophosphate (PPi) displayed net allosteric activation with various allosteric systems. Fructose behaved as a dose-dependent V activator with the substrate glucose. Glucose-6-phosphate (G6P) displayed net allosteric inhibition on rCsHK with respect to ATP or glucose with various allosteric systems in a dose-independent manner. There were differences in both mRNA and protein levels of CsHK among the life stages of adult worm, metacercaria, excysted metacercaria and egg of C. sinensis, suggesting different energy requirements during different development stages. Our study furthers the understanding of the biological functions of CsHK and supports the need to screen for small molecule inhibitors of CsHK to interfere with glycolysis in C. sinensis.
format Online
Article
Text
id pubmed-4169440
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-41694402014-09-22 Sequence Analysis and Molecular Characterization of Clonorchis sinensis Hexokinase, an Unusual Trimeric 50-kDa Glucose-6-Phosphate-Sensitive Allosteric Enzyme Chen, Tingjin Ning, Dan Sun, Hengchang Li, Ran Shang, Mei Li, Xuerong Wang, Xiaoyun Chen, Wenjun Liang, Chi Li, Wenfang Mao, Qiang Li, Ye Deng, Chuanhuan Wang, Lexun Wu, Zhongdao Huang, Yan Xu, Jin Yu, Xinbing PLoS One Research Article Clonorchiasis, which is induced by the infection of Clonorchis sinensis (C. sinensis), is highly associated with cholangiocarcinoma. Because the available examination, treatment and interrupting transmission provide limited opportunities to prevent infection, it is urgent to develop integrated strategies to prevent and control clonorchiasis. Glycolytic enzymes are crucial molecules for trematode survival and have been targeted for drug development. Hexokinase of C. sinensis (CsHK), the first key regulatory enzyme of the glycolytic pathway, was characterized in this study. The calculated molecular mass (Mr) of CsHK was 50.0 kDa. The obtained recombinant CsHK (rCsHK) was a homotrimer with an Mr of approximately 164 kDa, as determined using native PAGE and gel filtration. The highest activity was obtained with 50 mM glycine-NaOH at pH 10 and 100 mM Tris-HCl at pH 8.5 and 10. The kinetics of rCsHK has a moderate thermal stability. Compared to that of the corresponding negative control, the enzymatic activity was significantly inhibited by praziquantel (PZQ) and anti-rCsHK serum. rCsHK was homotropically and allosterically activated by its substrates, including glucose, mannose, fructose, and ATP. ADP exhibited mixed allosteric effect on rCsHK with respect to ATP, while inorganic pyrophosphate (PPi) displayed net allosteric activation with various allosteric systems. Fructose behaved as a dose-dependent V activator with the substrate glucose. Glucose-6-phosphate (G6P) displayed net allosteric inhibition on rCsHK with respect to ATP or glucose with various allosteric systems in a dose-independent manner. There were differences in both mRNA and protein levels of CsHK among the life stages of adult worm, metacercaria, excysted metacercaria and egg of C. sinensis, suggesting different energy requirements during different development stages. Our study furthers the understanding of the biological functions of CsHK and supports the need to screen for small molecule inhibitors of CsHK to interfere with glycolysis in C. sinensis. Public Library of Science 2014-09-18 /pmc/articles/PMC4169440/ /pubmed/25232723 http://dx.doi.org/10.1371/journal.pone.0107940 Text en © 2014 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Chen, Tingjin
Ning, Dan
Sun, Hengchang
Li, Ran
Shang, Mei
Li, Xuerong
Wang, Xiaoyun
Chen, Wenjun
Liang, Chi
Li, Wenfang
Mao, Qiang
Li, Ye
Deng, Chuanhuan
Wang, Lexun
Wu, Zhongdao
Huang, Yan
Xu, Jin
Yu, Xinbing
Sequence Analysis and Molecular Characterization of Clonorchis sinensis Hexokinase, an Unusual Trimeric 50-kDa Glucose-6-Phosphate-Sensitive Allosteric Enzyme
title Sequence Analysis and Molecular Characterization of Clonorchis sinensis Hexokinase, an Unusual Trimeric 50-kDa Glucose-6-Phosphate-Sensitive Allosteric Enzyme
title_full Sequence Analysis and Molecular Characterization of Clonorchis sinensis Hexokinase, an Unusual Trimeric 50-kDa Glucose-6-Phosphate-Sensitive Allosteric Enzyme
title_fullStr Sequence Analysis and Molecular Characterization of Clonorchis sinensis Hexokinase, an Unusual Trimeric 50-kDa Glucose-6-Phosphate-Sensitive Allosteric Enzyme
title_full_unstemmed Sequence Analysis and Molecular Characterization of Clonorchis sinensis Hexokinase, an Unusual Trimeric 50-kDa Glucose-6-Phosphate-Sensitive Allosteric Enzyme
title_short Sequence Analysis and Molecular Characterization of Clonorchis sinensis Hexokinase, an Unusual Trimeric 50-kDa Glucose-6-Phosphate-Sensitive Allosteric Enzyme
title_sort sequence analysis and molecular characterization of clonorchis sinensis hexokinase, an unusual trimeric 50-kda glucose-6-phosphate-sensitive allosteric enzyme
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4169440/
https://www.ncbi.nlm.nih.gov/pubmed/25232723
http://dx.doi.org/10.1371/journal.pone.0107940
work_keys_str_mv AT chentingjin sequenceanalysisandmolecularcharacterizationofclonorchissinensishexokinaseanunusualtrimeric50kdaglucose6phosphatesensitiveallostericenzyme
AT ningdan sequenceanalysisandmolecularcharacterizationofclonorchissinensishexokinaseanunusualtrimeric50kdaglucose6phosphatesensitiveallostericenzyme
AT sunhengchang sequenceanalysisandmolecularcharacterizationofclonorchissinensishexokinaseanunusualtrimeric50kdaglucose6phosphatesensitiveallostericenzyme
AT liran sequenceanalysisandmolecularcharacterizationofclonorchissinensishexokinaseanunusualtrimeric50kdaglucose6phosphatesensitiveallostericenzyme
AT shangmei sequenceanalysisandmolecularcharacterizationofclonorchissinensishexokinaseanunusualtrimeric50kdaglucose6phosphatesensitiveallostericenzyme
AT lixuerong sequenceanalysisandmolecularcharacterizationofclonorchissinensishexokinaseanunusualtrimeric50kdaglucose6phosphatesensitiveallostericenzyme
AT wangxiaoyun sequenceanalysisandmolecularcharacterizationofclonorchissinensishexokinaseanunusualtrimeric50kdaglucose6phosphatesensitiveallostericenzyme
AT chenwenjun sequenceanalysisandmolecularcharacterizationofclonorchissinensishexokinaseanunusualtrimeric50kdaglucose6phosphatesensitiveallostericenzyme
AT liangchi sequenceanalysisandmolecularcharacterizationofclonorchissinensishexokinaseanunusualtrimeric50kdaglucose6phosphatesensitiveallostericenzyme
AT liwenfang sequenceanalysisandmolecularcharacterizationofclonorchissinensishexokinaseanunusualtrimeric50kdaglucose6phosphatesensitiveallostericenzyme
AT maoqiang sequenceanalysisandmolecularcharacterizationofclonorchissinensishexokinaseanunusualtrimeric50kdaglucose6phosphatesensitiveallostericenzyme
AT liye sequenceanalysisandmolecularcharacterizationofclonorchissinensishexokinaseanunusualtrimeric50kdaglucose6phosphatesensitiveallostericenzyme
AT dengchuanhuan sequenceanalysisandmolecularcharacterizationofclonorchissinensishexokinaseanunusualtrimeric50kdaglucose6phosphatesensitiveallostericenzyme
AT wanglexun sequenceanalysisandmolecularcharacterizationofclonorchissinensishexokinaseanunusualtrimeric50kdaglucose6phosphatesensitiveallostericenzyme
AT wuzhongdao sequenceanalysisandmolecularcharacterizationofclonorchissinensishexokinaseanunusualtrimeric50kdaglucose6phosphatesensitiveallostericenzyme
AT huangyan sequenceanalysisandmolecularcharacterizationofclonorchissinensishexokinaseanunusualtrimeric50kdaglucose6phosphatesensitiveallostericenzyme
AT xujin sequenceanalysisandmolecularcharacterizationofclonorchissinensishexokinaseanunusualtrimeric50kdaglucose6phosphatesensitiveallostericenzyme
AT yuxinbing sequenceanalysisandmolecularcharacterizationofclonorchissinensishexokinaseanunusualtrimeric50kdaglucose6phosphatesensitiveallostericenzyme