| Literature DB >> 17567895 |
Kostyantyn V Dmytruk1, Oleh V Smutok, Olena B Ryabova, Galyna Z Gayda, Volodymyr A Sibirny, Wolfgang Schuhmann, Mykhailo V Gonchar, Andriy A Sibirny.
Abstract
BACKGROUND: Accurate, rapid, and economic on-line analysis of ethanol is very desirable. However, available biosensors achieve saturation at very low ethanol concentrations and thus demand the time and labour consuming procedure of sample dilution.Entities:
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Year: 2007 PMID: 17567895 PMCID: PMC1905912 DOI: 10.1186/1472-6750-7-33
Source DB: PubMed Journal: BMC Biotechnol ISSN: 1472-6750 Impact factor: 2.563
KM and Vmax values of AOX towards methanol for natural and mutant H. polymorpha strains.
| КМ, mM | Vmax, μmol of atomic O·min-1·mg-1 of protein at 20°C | Sigma factor, σ | Linear regression coefficient R for reciprocal plot | |
| DL-1-356 | 0.62 | 27.4 | 0.084 | 0.992 |
| CA2 | 2.48 | 66.7 | 0.040 | 0.958* |
| CA4 | 1.10 | 31.3 | 0.130 | 0.990 |
* A relatively low value of linear regression coefficient R for reciprocal plot for CA2-AOX can be explained by decreased activity measured and with accordingly increased error value
Figure 1Alignment of deduced amino acid sequences for AOX from the mutant strains of H. polymorpha CA2, CA4 and the wild type DL1.
Preparative isolation and purification of AOX from the mutant strains (on the example of CA2).
| Stage | Result | Specific AOX activity, μmol·min-1·mg-1 of protein (U·mg-1) | Total AOX yield, U (%)* |
| Cell growth | 17.7 g of cells | 0.35 (per 1 mg of cells) | 6130 (100%) |
| Cell disintegration | Crude extract, mg 2300 | 2.0 | 4600 (75%) |
| Fractionation by ammonium sulphate (30 – 70%) | Protein precipitate (70% of ammonium sulphate saturation), mg 750 | 4.0 | 3000 (49%) |
| Chromatography on DEAE – Toyopearl 650 M | Protein sample, mg 75 | 16.0 | 1200 (20%) |
* 1 Unit is equal 1 μmol of converted substrate per 1 min at standard conditions of assay (20°C).
Figure 2Chronoamperometric assay of ethanol by HRP/Os-Ap59//AOX/CP9 biosensors based on the native (nAOX) and mutated AOX (mAOX) forms of alcohol oxidase and the derived calibration curves. Arrays indicate step-wise addition of ethanol in different concentrations.
Figure 3Calibration curves and calculated KM values of sensors based on the different forms of AOX toward ethanol (EtOH) and formaldehyde (A) and dynamic linear ranges of the corresponded sensors toward both analytes (B).
Figure 4Comparison of an operational stability of nAOX and mAOX-modified electrodes.