| Literature DB >> 31500317 |
Denis L Atroshenko1,2,3, Mikhail D Shelomov4,5, Sophia A Zarubina6,7, Nikita Y Negru8, Igor V Golubev9,10, Svyatoslav S Savin11,12, Vladimir I Tishkov13,14,15.
Abstract
d-amino acid oxidase (DAAO, EC 1.4.3.3) is used in many biotechnological processes. The main industrial application of DAAO is biocatalytic production of 7-aminocephalosporanic acid from cephalosporin C with a two enzymes system. DAAO from the yeast Trigonopsis variabilis (TvDAAO) shows the best catalytic parameters with cephalosporin C among all known DAAOs. We prepared and characterized multipoint TvDAAO mutants to improve their activity towards cephalosporin C and increase stability. All TvDAAO mutants showed better properties in comparison with the wild-type enzyme. The best mutant was TvDAAO with amino acid changes E32R/F33D/F54S/C108F/M156L/C298N. Compared to wild-type TvDAAO, the mutant enzyme exhibits a 4 times higher catalytic constant for cephalosporin C oxidation and 8- and 20-fold better stability against hydrogen peroxide inactivation and thermal denaturation, respectively. This makes this mutant promising for use in biotechnology. The paper also presents the comparison of TvDAAO catalytic properties with cephalosporin C reported by others.Entities:
Keywords: Trigonopsis variabilis; cephalosporin C; d-amino acid oxidase; multipoint mutants; oxidative stability; thermal stability
Mesh:
Substances:
Year: 2019 PMID: 31500317 PMCID: PMC6770189 DOI: 10.3390/ijms20184412
Source DB: PubMed Journal: Int J Mol Sci ISSN: 1422-0067 Impact factor: 5.923
Figure 1Correlation between wt-TvDAAO concentrations measured with the Bradford method with bovine serum albumin (BSA) as a standard and FAD extinction coefficient (0.1 M potassium phosphate buffer pH 8.0).
Purification of wild-type and mutant TvDAAOs.
| TvDAAO Form | Yield, % | Specific Activity 1, (U/mg) |
|---|---|---|
| wild-type | 44 | 140 |
| RDF | 44 | 149 |
| RDSF | 43 | 47 |
| SFL | 61 | 63 |
| RDSFL | 95 | 50 |
| RDSFLG | 90 | 55 |
| RDSFLN | 72 | 66 |
| RDSFLQ | 82 | 46 |
1 Activity measured with d-Met as a substrate.
Figure 2Inactivation time-course for the wild-type TvDAAO and mutant enzymes at 60 °C (0.1 M potassium phosphate buffer pH 8.0). Enzyme concentration is 10 μg/mL.
Half-life times τ1/2 (min) of wild-type TvDAAO and TvDAAO mutants (0.1 M potassium phosphate buffer pH 8.0).
| TvDAAO form | Temperature (°C) | ||||||||
|---|---|---|---|---|---|---|---|---|---|
| 50 | 52 | 54 | 56 | 58 | 60 | 62 | 64 | 66 | |
| wild-type | 73 | 47 | 23 | 7.2 | 4.7 | 2.7 | - | - | - |
| RDF | - | - | 150 | 42 | 19 | 8.9 | 3.1 | - | - |
| RDSF | - | - | 79 | 33 | 9.5 | 5.6 | 2.8 | - | - |
| SFL | - | - | - | 110 | 57 | 17 | 9.8 | - | - |
| RDSFL | - | - | - | - | 43 | 15 | 4.6 | 1.4 | - |
| RDSFLG | - | - | - | - | - | 41 | 27 | 6.5 | 2.6 |
| RDSFLN | - | - | - | - | - | 54 | 19 | 6.0 | 4.2 |
| RDSFLQ | - | - | - | - | - | 77 | 16 | 4.0 | - |
Figure 3Inactivation time-course for TvDAAO mutants and wild-type enzyme in 0.1 M H2O2 (0.1 M potassium phosphate buffer pH 8.0, 30 °C). Enzyme concentration is 10 μg/mL.
Half-life times τ1/2 (min) of TvDAAO mutants and wild-type enzyme under hydrogen peroxide inactivation (0.1 M potassium phosphate buffer pH 8.0).
| TvDAAO Form | [H2O2], (M) | |
|---|---|---|
| 0.01 M | 0.1 M | |
| wild-type | 14 | 2.6 |
| RDF | - | 1.6 |
| RDSF | - | 1.8 |
| SFL | 17 | 1.7 |
| RDSFL | 9 | 1.5 |
| RDSFLG |
|
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| RDSFLN |
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| RDSFLQ |
|
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Increased half-life time of TvDAAO mutants in comparison with wild-type enzyme is marked with bold.
Kinetic parameters of wt-TvDAAO, TvDAAO RDF, TvDAAO RDSF and TvDAAO SFL with different d-amino acids (0.05 M KPB, pH 8.0, 30 °C, air saturated).
| Amino Acid | wt-TvDAAO | TvDAAO RDF | TvDAAO RDSF | TvDAAO SFL | ||||
|---|---|---|---|---|---|---|---|---|
| 0.46 | 81 | 2.7 |
| 1.3 | 37 | 1.2 | 39 | |
| 17 | 109 | 51 | 31 |
| 3.1 | - | - | |
| 14 | 85 | 39 | 37 |
| 2.5 | - | - | |
| 0.40 | 29 | 0.58 | 21 |
| 12 |
| 17 | |
| 0.37 | 27 | 1.1 |
| 1.7 |
| 1.3 |
| |
| 0.45 | 22 |
| 11 | 0.36 |
|
|
| |
| 0.49 | 42 | 0.79 | 28 | 1.0 | 23 | 0.74 | 19 | |
| 23 | 62 |
|
|
| 68 |
|
| |
| 29 | 3.5 | 48 |
|
|
| - | - | |
| 37 | 20 | 32 | 5.5 | - | - | - | - | |
| 11 | 1.8 | - 2 | - | - | - | - | - | |
1 Improved catalytic parameters of TvDAAO mutants in comparison with wt-TvDAAO are marked with bold. 2 Too low activity.
Kinetic parameters of TvDAAO RDSFL, TvDAAO RDSFLG, TvDAAO RDSFLN and TvDAAO RDSFLQ with different d-amino acids (0.05 M KPB, pH 8.0, 30 °C, air saturated).
| Amino Acid | TvDAAO RDSFL | TvDAAO RDSFLG | TvDAAO RDSFLN | TvDAAO RDSFLQ | ||||
|---|---|---|---|---|---|---|---|---|
| 1.1 | 33 | 1.1 | 28 | 1.4 | 41 | 0.98 | 33 | |
|
| 2.3 |
| 4.2 |
| 4.9 |
| 4.3 | |
|
| 2.6 |
| 3.8 |
| 3.7 |
| 3.0 | |
|
| 14 |
| 18 |
| 18 |
| 14 | |
| 0.33 |
| 0.37 |
| 0.77 |
| 1.2 | 31 | |
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| 14 | |
| 0.61 | 18 | 0.81 | 14 | 0.87 | 22 | 0.58 | 6.7 | |
|
| 69 |
| 58 |
| 68 |
| 61 | |
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| |
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| 0.98 | - 2 | - |
| 2.2 | - | - | |
| 9.8 | 0.47 | - | - | - | - | - | - | |
1 Improved catalytic parameters of TvDAAO mutants in comparison with wt-TvDAAO are marked with bold. 2 Too low activity.
Figure 4Relative change in Michaelis constants ((Kmut/Kwt)*100%) of TvDAAO mutants. The Michaelis constant of the wild-type enzyme was taken as 100% and indicated by the blue dashed line (0.05 M potassium phosphate buffer pH 8.0, 30 °C, air saturated).
Figure 5Relative change in catalytic constants ((kmut/kwt)*100%) of TvDAAO mutants. The catalytic constant of the wild-type enzyme was taken as 100% and indicated by the blue dashed line (0.05 M potassium phosphate buffer pH 8.0, 30 °C, air saturated).
Catalytic parameters of mutant TvDAAOs with cephalosporin C (0.1 M potassium phosphate buffer pH 8.0, 30 °C, air saturated).
| TvDAAO Form | |||
|---|---|---|---|
| wild-type | 1.4 ± 0.4 | 26 ± 3 | 18 ± 5 |
| RDF |
| 25.5 ± 1.4 | 22 ± 2 |
| RDSF | 1.9 ± 0.4 |
|
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| SFL | 1.9 ± 0.6 |
|
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| RDSFL | 1.6 ± 0.3 |
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| RDSFLG |
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| RDSFLN | 2.9 ± 0.5 |
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| RDSFLQ | 1.4 ± 0.3 |
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1 Improved catalytic parameters of mutant TvDAAOs in comparison with wild-type enzyme are marked with bold.
Comparison of reported catalytic properties of wt-TvDAAO with cephalosporin C.
| Source | wt-TvDAAO Concentration | Reaction Condition | Measurement Methods | Catalytic Properties from Source | Recalculated Catalytic Properties 1 |
|---|---|---|---|---|---|
| This work | FAD extinction | pH 8.0, 30 °C | Cephalosporin | ||
| [ | Bradford | pH 8.0, 37 °C | Oxygen consumption | ||
| [ | Bradford | pH 7.5, 22 °C | GL-7-ACA production | ||
| [ | FAD extinction | pH 8.5, 25 °C | Oxygen consumption | ||
| [ | Bradford | pH 8.0, 25 °C | OPD/HRP |
1 Data recalculated with C(wt-TvDAAO) by FAD/C(wt-TvDAAO) by Bradford/BSA = 1.63 and MW(wt-TvDAAO) = 39.3 kDa.
Comparison of the properties of the TvDAAO mutants with wt-TvDAAO.
| TvDAAO Form | Thermal Stability | Oxidative Stability | Total | |
|---|---|---|---|---|
| RDF | + | 0 | 0 | + |
| RDSF | + | 0 | + | ++ |
| SFL | + | 0 | ++ | +++ |
| RDSFL | + | 0 | ++ | +++ |
| RDSFLG | ++ | ++ | + | +++++ |
| RDSFLN | ++ | ++ | ++ | ++++++ |
| RDSFLQ | ++ | + | + | ++++ |
“0”—minor effect, “+”—moderate improvement, “++”—greatest improvement. For thermal stability “+” mean 3-10 times higher stability, “++” mean 15-30 times higher stability. For oxidative stability “+” mean ≈6 times higher stability, “++” mean 8-10 times higher stability. For k wit CPC “+” mean ≈2.5 times higher value, “++” mean 3-5 times higher value.