Your browser doesn't support javascript.
loading
Show: 20 | 50 | 100
Results 1 - 5 de 5
Filter
Add more filters










Database
Language
Publication year range
1.
Biochimie ; 216: 194-204, 2024 Jan.
Article in English | MEDLINE | ID: mdl-37925050

ABSTRACT

NAD+-dependent formate dehydrogenase (FDH, EC 1.2.1.2) from the bacterium Staphylococcus aureus (SauFDH) plays an important role in the vital activity of this bacterium, especially in the form of biofilms. Understanding its mechanism and structure-function relationship can help to find special inhibitors of this enzyme, which can be used as medicines against staphylococci. The gene encoding SauFDH was successfully cloned and expressed in our laboratory. This enzyme has the highest kcat value among the described FDHs and also has a high temperature stability compared to other enzymes of this group. That is why it can also be considered as a promising catalyst for NAD(P)H regeneration in the processes of chiral synthesis with oxidoreductases. In this work, the principle of rational design was used to improve SauFDH catalytic efficiency. After bioinformatics analysis of the amino acid sequence in combination with visualization of the enzyme structure (PDB 6TTB), 9 probable catalytically significant positions 119, 194, 196, 217-219, 246, 303 and 323 were identified, and 16 new mutant forms of SauFDH were obtained and characterized by kinetic experiments. The introduction of the mentioned substitutions in most cases leads to a decrease in stability at high temperatures and an increase at low temperatures. Substitutions in positions 119 and 194 lead to a decreasing of KMNAD+. A consistent decrease in the Michaelis constant in the Ile-Val-Ala-Gly series at position 119 of SauFDH is shown. KMNAD+ of mutant SauFDH V119G decreased by 27 times compared to the wild-type enzyme. After substitution Phe194Val KMNAD + decreased by 3.5 times. The catalytic constant for this mutant form practically did not change. For this mutant form, an increase in catalytic efficiency was demonstrated through the use of a multicomponent buffer system.


Subject(s)
Formate Dehydrogenases , NAD , NAD/metabolism , Mutagenesis, Site-Directed , Formate Dehydrogenases/genetics , Formate Dehydrogenases/chemistry , Formate Dehydrogenases/metabolism , Staphylococcus aureus/genetics , Staphylococcus aureus/metabolism , Models, Molecular , Structure-Activity Relationship , Kinetics
2.
Biochemistry (Mosc) ; 88(9): 1378-1389, 2023 Sep.
Article in English | MEDLINE | ID: mdl-37770404

ABSTRACT

Previously, the gene of formate dehydrogenase (FDH, EC 1.2.1.2) from the thermotolerant methylotrophic yeast Ogataea parapolymorpha DL 1 (OpaFDH) was cloned in our laboratory. Recombinant enzyme with additional glycine amino acid residue (OpaFDH_GK) was obtained in Escherichia coli cells in active and soluble form with a yield of more than 1 g per liter of the medium. In the present work, a detailed comparison of this enzyme with FDHs from other sources was carried out. Among eukaryotic formate dehydrogenases, OpaFDH has the highest thermal stability. To elucidate effect of N-terminal residue on the properties of the enzyme, OpaFDH_K (identical to natural) and OpaFDH_AK variants containing an additional Ala residue at the N-terminus were also obtained. It was shown that addition of an Ala residue to the N-terminus reduces four-fold the rate constant of thermal inactivation compared with the addition of a Gly residue. Addition of six more histidine residues to the N-terminus of OpaFDH_AK leads to acceleration of purification, practically does not affect kinetic parameters, but somewhat reduces thermal stability, which, however, can be restored to the level of OpaFDH_AK stability by adding 0.5 M NaCl.

3.
Electrophoresis ; 44(15-16): 1155-1164, 2023 08.
Article in English | MEDLINE | ID: mdl-37075472

ABSTRACT

In order to accelerate Sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE), here we propose an optimized version of the technique enabled by experimental tuning reinforced by theoretical description. In the resulting system, the gel buffer was diluted twofold and supplemented with glycine at a low concentration, whereas a higher voltage was applied. This approach reduced runtime from 90 to 18 min. It is important to emphasize that, despite the high voltage applied to the gel, the resolution of the bands did not decrease compared to the original Laemmli method. The proposed acceleration approach can be used in other variants of SDS-PAGE.


Subject(s)
Glycine , Proteins , Proteins/analysis , Sodium Dodecyl Sulfate , Electrophoresis, Polyacrylamide Gel
4.
Int J Mol Sci ; 25(1)2023 Dec 30.
Article in English | MEDLINE | ID: mdl-38203708

ABSTRACT

Ribonucleoside hydrolase C (RihC, EC 3.2.2.1, 3.2.2.2, 3.2.2.3, 3.2.2.7, 3.2.2.8) belongs to the family of ribonucleoside hydrolases Rih and catalyzes the cleavage of ribonucleosides to nitrogenous bases and ribose. RihC is one of the enzymes that are synthesized by lactobacilli in response to the presence of Klebsiella. To characterize this protein from Limosilactobacillus reuteri LR1, we cloned and expressed it. The activity of the enzyme was studied towards a wide range of substrates, including ribonucleosides, deoxyribonucleosides as well as an arabinoside. It was shown that the enzyme is active only with ribonucleosides and arabinoside, with the best substrate being uridine. The thermal stability of this enzyme was studied, and its crystal structure was obtained, which demonstrated the tetrameric architecture of the enzyme and allowed to shed light on a correlation between its structure and enzymatic activity. Comprehensive comparisons of all known RihC structures, both existing crystal structures and computed model structures from various species, were made, allowing for the identification of structural motifs important for enzyme functioning.


Subject(s)
Limosilactobacillus reuteri , Ribonucleosides , Uridine , Carboxylic Ester Hydrolases
5.
Int J Mol Sci ; 20(18)2019 Sep 07.
Article in English | MEDLINE | ID: mdl-31500317

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.


Subject(s)
Amino Acid Substitution , Cephalosporins/metabolism , D-Amino-Acid Oxidase/genetics , Saccharomycetales/enzymology , Biocatalysis , D-Amino-Acid Oxidase/chemistry , D-Amino-Acid Oxidase/metabolism , Enzyme Stability , Fungal Proteins/chemistry , Fungal Proteins/genetics , Fungal Proteins/metabolism , Hydrogen Peroxide/pharmacology , Point Mutation , Saccharomycetales/genetics , Thermodynamics
SELECTION OF CITATIONS
SEARCH DETAIL
...