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Effect of viscosity on efficiency of enzyme catalysis of bacterial luciferase coupled with lactate dehydrogenase and NAD(P)H:FMN-Oxidoreductase
- Source :
- Molecular Catalysis. 458:60-66
- Publication Year :
- 2018
- Publisher :
- Elsevier BV, 2018.
-
Abstract
- One of the current trends of the modern biology figures out cellular enzyme behaviour. Numerous researches look more closely at the chemical composition of creating in vivo simulated media conditions. The aim of this work was to find out a thermodynamic cooperativity of enzymes in a triple-enzyme chain (lactate dehydrogenase + NAD(P)H: FMN-oxidoreductase + bacterial luciferase) under in vivo simulated condition. The thermodynamic cooperativity effects were found out based on the influence of the viscogens (glycerol and sucrose) on the thermal stability of the triple-enzyme system. The results showed that the viscogens do not lead to an increase in the thermal stability of the triple-enzyme system. In addition, organic solvents (sucrose and glycerol) added as viscous agents to the reaction medium altered the kinetics of this triple-enzyme chain, including changing the light emission decay constant (k dec ) and quantum yield of luminescence (Q). Plus, sucrose was found to be more efficient in limiting the flexibility of enzymes than glycerol. The high sensitivity of the triple-enzyme system to the viscogens may be connected with a fact that lactate dehydrogenase does not bound with couple enzyme system NAD(P)H: FMN-oxidoreductase + bacterial luciferase inside the real cell. Since this approach may be used as a method to understand the real connection between enzymes in cellular multi-enzyme metabolic chains inside the luminous bacteria cell.
- Subjects :
- 0301 basic medicine
chemistry.chemical_classification
030102 biochemistry & molecular biology
Process Chemistry and Technology
Cooperativity
Catalysis
Enzyme catalysis
03 medical and health sciences
chemistry.chemical_compound
030104 developmental biology
Enzyme
chemistry
Lactate dehydrogenase
FMN reductase
Glycerol
Biophysics
Light emission
NAD+ kinase
Physical and Theoretical Chemistry
Subjects
Details
- ISSN :
- 24688231
- Volume :
- 458
- Database :
- OpenAIRE
- Journal :
- Molecular Catalysis
- Accession number :
- edsair.doi...........8c9daad7e5872a27ff86bb48e4f928a0
- Full Text :
- https://doi.org/10.1016/j.mcat.2018.08.012