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Production and Characterization of Recombinant Wild Type Uricase from Indonesian Coelacanth (L. menadoensis) and Improvement of Its Thermostability by In Silico Rational Design and Disulphide Bridges Engineering

The ideal therapeutic uricase (UOX) is expected to have the following properties; high expression level, high activity, high thermostability, high solubility and low immunogenicity. The latter property is believed to depend largely on sequence identity to the deduced human UOX (dH-UOX). Herein, we e...

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Autores principales: Yainoy, Sakda, Phuadraksa, Thanawat, Wichit, Sineewanlaya, Sompoppokakul, Maprang, Songtawee, Napat, Prachayasittikul, Virapong, Isarankura-Na-Ayudhya, Chartchalerm
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6471336/
https://www.ncbi.nlm.nih.gov/pubmed/30871218
http://dx.doi.org/10.3390/ijms20061269
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author Yainoy, Sakda
Phuadraksa, Thanawat
Wichit, Sineewanlaya
Sompoppokakul, Maprang
Songtawee, Napat
Prachayasittikul, Virapong
Isarankura-Na-Ayudhya, Chartchalerm
author_facet Yainoy, Sakda
Phuadraksa, Thanawat
Wichit, Sineewanlaya
Sompoppokakul, Maprang
Songtawee, Napat
Prachayasittikul, Virapong
Isarankura-Na-Ayudhya, Chartchalerm
author_sort Yainoy, Sakda
collection PubMed
description The ideal therapeutic uricase (UOX) is expected to have the following properties; high expression level, high activity, high thermostability, high solubility and low immunogenicity. The latter property is believed to depend largely on sequence identity to the deduced human UOX (dH-UOX). Herein, we explored L. menadoensis uricase (LM-UOX) and found that it has 65% sequence identity to dH-UOX, 68% to the therapeutic chimeric porcine-baboon UOX (PBC) and 70% to the resurrected ancient mammal UOX. To study its biochemical properties, recombinant LM-UOX was produced in E. coli and purified to more than 95% homogeneity. The enzyme had specific activity up to 10.45 unit/mg, which was about 2-fold higher than that of the PBC. One-litre culture yielded purified protein up to 132 mg. Based on homology modelling, we successfully engineered I27C/N289C mutant, which was proven to contain inter-subunit disulphide bridges. The mutant had similar specific activity and production yield to that of wild type (WT) but its thermostability was dramatically improved. Up on storage at −20 °C and 4 °C, the mutant retained ~100% activity for at least 60 days. By keeping at 37 °C, the mutant retained ~100% activity for 15 days, which was 120-fold longer than that of the wild type. Thus, the I27C/N289C mutant has potential to be developed for treatment of hyperuricemia.
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spelling pubmed-64713362019-04-26 Production and Characterization of Recombinant Wild Type Uricase from Indonesian Coelacanth (L. menadoensis) and Improvement of Its Thermostability by In Silico Rational Design and Disulphide Bridges Engineering Yainoy, Sakda Phuadraksa, Thanawat Wichit, Sineewanlaya Sompoppokakul, Maprang Songtawee, Napat Prachayasittikul, Virapong Isarankura-Na-Ayudhya, Chartchalerm Int J Mol Sci Article The ideal therapeutic uricase (UOX) is expected to have the following properties; high expression level, high activity, high thermostability, high solubility and low immunogenicity. The latter property is believed to depend largely on sequence identity to the deduced human UOX (dH-UOX). Herein, we explored L. menadoensis uricase (LM-UOX) and found that it has 65% sequence identity to dH-UOX, 68% to the therapeutic chimeric porcine-baboon UOX (PBC) and 70% to the resurrected ancient mammal UOX. To study its biochemical properties, recombinant LM-UOX was produced in E. coli and purified to more than 95% homogeneity. The enzyme had specific activity up to 10.45 unit/mg, which was about 2-fold higher than that of the PBC. One-litre culture yielded purified protein up to 132 mg. Based on homology modelling, we successfully engineered I27C/N289C mutant, which was proven to contain inter-subunit disulphide bridges. The mutant had similar specific activity and production yield to that of wild type (WT) but its thermostability was dramatically improved. Up on storage at −20 °C and 4 °C, the mutant retained ~100% activity for at least 60 days. By keeping at 37 °C, the mutant retained ~100% activity for 15 days, which was 120-fold longer than that of the wild type. Thus, the I27C/N289C mutant has potential to be developed for treatment of hyperuricemia. MDPI 2019-03-13 /pmc/articles/PMC6471336/ /pubmed/30871218 http://dx.doi.org/10.3390/ijms20061269 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Yainoy, Sakda
Phuadraksa, Thanawat
Wichit, Sineewanlaya
Sompoppokakul, Maprang
Songtawee, Napat
Prachayasittikul, Virapong
Isarankura-Na-Ayudhya, Chartchalerm
Production and Characterization of Recombinant Wild Type Uricase from Indonesian Coelacanth (L. menadoensis) and Improvement of Its Thermostability by In Silico Rational Design and Disulphide Bridges Engineering
title Production and Characterization of Recombinant Wild Type Uricase from Indonesian Coelacanth (L. menadoensis) and Improvement of Its Thermostability by In Silico Rational Design and Disulphide Bridges Engineering
title_full Production and Characterization of Recombinant Wild Type Uricase from Indonesian Coelacanth (L. menadoensis) and Improvement of Its Thermostability by In Silico Rational Design and Disulphide Bridges Engineering
title_fullStr Production and Characterization of Recombinant Wild Type Uricase from Indonesian Coelacanth (L. menadoensis) and Improvement of Its Thermostability by In Silico Rational Design and Disulphide Bridges Engineering
title_full_unstemmed Production and Characterization of Recombinant Wild Type Uricase from Indonesian Coelacanth (L. menadoensis) and Improvement of Its Thermostability by In Silico Rational Design and Disulphide Bridges Engineering
title_short Production and Characterization of Recombinant Wild Type Uricase from Indonesian Coelacanth (L. menadoensis) and Improvement of Its Thermostability by In Silico Rational Design and Disulphide Bridges Engineering
title_sort production and characterization of recombinant wild type uricase from indonesian coelacanth (l. menadoensis) and improvement of its thermostability by in silico rational design and disulphide bridges engineering
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6471336/
https://www.ncbi.nlm.nih.gov/pubmed/30871218
http://dx.doi.org/10.3390/ijms20061269
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