Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Production and differential activity of recombinant human wild-type G6PD and G6PD Viangchan

View through CrossRef
Abstract Background Glucose-6-phosphate dehydrogenase (G6PD) is essential to produce reduced nicotinamide adenine dinucleotide phosphate, which is required to protect cells against oxidative stress. G6PD deficiency is a genetic variation that may lead to hemolysis with potential consequences, such as kidney failure, and patients often experience low quality of life. Objectives To establish a simple, efficient, and optimized method to produce a G6PD Viangchan variant and characterize the phenotypes of recombinant human wild-type G6PD and G6PD Viangchan . Methods G6PD was amplified by polymerase chain reaction (PCR) from a human cDNA plasmid, and the gene for G6PD Viangchan was amplified by initiating a mutation at location 871 (G>A) through site-directed mutagenesis. Protein expression and western blotting were conducted after successful cloning. The enzymatic activity of both proteins was assessed spectrophotometrically after purification. Results Both amplicons were successfully cloned into a pET26b(+) expression vector and transformed into Escherichia coli BL21 (DE3) cells for overexpression as C-terminally histidine-tagged recombinant proteins. Western blotting confirmed that both proteins were successfully produced at similar levels. The enzymes were purified by immobilized metal (Co) affinity chromatography. Postpurification assay of enzyme activity revealed about 2-fold differences in the levels of specific activity between the wild-type G6PD (155.88 U/mg) and G6PD Viangchan (81.85 U/mg), which is consistent with earlier reports. Analysis in silico showed that the coding change in G6PD Viangchan has a substantial effect on protein folding structure. Conclusions We successfully cloned, expressed, and purified both wild-type G6PD and G6PD Viangchan proteins. Such a protocol may be useful for creating a model system to study G6PD deficiency disease.
Title: Production and differential activity of recombinant human wild-type G6PD and G6PD Viangchan
Description:
Abstract Background Glucose-6-phosphate dehydrogenase (G6PD) is essential to produce reduced nicotinamide adenine dinucleotide phosphate, which is required to protect cells against oxidative stress.
G6PD deficiency is a genetic variation that may lead to hemolysis with potential consequences, such as kidney failure, and patients often experience low quality of life.
Objectives To establish a simple, efficient, and optimized method to produce a G6PD Viangchan variant and characterize the phenotypes of recombinant human wild-type G6PD and G6PD Viangchan .
Methods G6PD was amplified by polymerase chain reaction (PCR) from a human cDNA plasmid, and the gene for G6PD Viangchan was amplified by initiating a mutation at location 871 (G>A) through site-directed mutagenesis.
Protein expression and western blotting were conducted after successful cloning.
The enzymatic activity of both proteins was assessed spectrophotometrically after purification.
Results Both amplicons were successfully cloned into a pET26b(+) expression vector and transformed into Escherichia coli BL21 (DE3) cells for overexpression as C-terminally histidine-tagged recombinant proteins.
Western blotting confirmed that both proteins were successfully produced at similar levels.
The enzymes were purified by immobilized metal (Co) affinity chromatography.
Postpurification assay of enzyme activity revealed about 2-fold differences in the levels of specific activity between the wild-type G6PD (155.
88 U/mg) and G6PD Viangchan (81.
85 U/mg), which is consistent with earlier reports.
Analysis in silico showed that the coding change in G6PD Viangchan has a substantial effect on protein folding structure.
Conclusions We successfully cloned, expressed, and purified both wild-type G6PD and G6PD Viangchan proteins.
Such a protocol may be useful for creating a model system to study G6PD deficiency disease.

Related Results

Assessment of CareStart G6PD rapid diagnostic test and CareStart G6PD biosensor in Mauritania
Assessment of CareStart G6PD rapid diagnostic test and CareStart G6PD biosensor in Mauritania
Abstract Background The elimination of Plasmodium vivax malaria requires 8-aminoquinolines, which are contraindicated in patients with glucose-6-pho...
Genetic heterogeneity of glucose 6-phosphate dehydrogenase (G6PD) regulatory region in G6PD deficient patients
Genetic heterogeneity of glucose 6-phosphate dehydrogenase (G6PD) regulatory region in G6PD deficient patients
G6PD deficiency is a genetic disorder caused by either suboptimal function of the G6PD enzyme or instability of the G6PD gene, resulting in insufficient production of the G6PD prot...
Use of the “STANDARD G6PDTM” quantitative point-of-care test in neonates and infants
Use of the “STANDARD G6PDTM” quantitative point-of-care test in neonates and infants
Severe neonatal hyperbilirubinaemia represents a considerable cause of mortality and long term-morbidity in neonates born in low resource settings. Early identification of risk fac...
Evaluation of diagnostic performance of the “STANDARD G6PD™” quantitative point-of-care test in neonates and infants
Evaluation of diagnostic performance of the “STANDARD G6PD™” quantitative point-of-care test in neonates and infants
Abstract Severe neonatal hyperbilirubinaemia represents a considerable cause of mortality and long term-morbidity in neonates born in low resource settings. Early i...
Glucose-6-phosphate Dehydrogenase (G6PD): the Role in Tumor Progression and Immunotherapy
Glucose-6-phosphate Dehydrogenase (G6PD): the Role in Tumor Progression and Immunotherapy
Abstract Background: Numerous studies have shown that glucose-6-phosphate dehydrogenase (G6PD) is a tumor-promoting factor in a variety of malignancies. However, it is not ...

Back to Top