Carbonic anhydrase (CA) is a family of metalloenzymes that has the potential to sequestrate carbon dioxide (CO<sub>2</sub>) from the environment and reduce pollution. The goal of this study is to apply protein engineering to develop a modified CA enzyme that has both higher stability and activity and hence could be used for industrial purposes. In the current study, we have developed an in silico method to understand the molecular basis behind the stability of CA. We have performed comparative molecular dynamics simulation of two homologous α-CA, one of thermophilic origin (<i>Sulfurihydrogenibium</i> sp.) and its mesophilic counterpart (Neisseria gonorrhoeae), for 100 ns each at 300, 350, 400, and 500 K. Comparing the trajectories of two p...
Enhancing the functionalities and properties of enzymes via computational prediction is an emerging ...
Cellulose is the most abundant biopolymer on earth. Enzymatic degradation of this biopolymer is a cr...
Biomimetic CO2 capture includes environmentally friendly solutions based on carbonic anhydrase (CA),...
Carbonic anhydrase (CA) is a family of metalloenzymes that has the potential to sequestrate carbon d...
The stability of enzymes is critical for their application in industrial processes, which generally ...
The stability of enzymes is critical for their application in industrial processes, which generally ...
The stability of enzymes is critical for their application in industrial processes, which generally ...
Carbonic anhydrase can be used as an additive to improve the efficiency of carbon capture and utilis...
Exploiting carbonic anhydrase (CA), an enzyme that rapidly catalyzes carbon dioxide hydration, is an...
The selection of a biocatalyst for the development of a biomimetic CCS processes has several constra...
The selection of a biocatalyst for the development of a biomimetic CCS processes has several constra...
The selection of a biocatalyst for the development of a biomimetic CCS processes has several constra...
ABSTRACT: To find a disulfide pair that could stabilize the enzyme human carbonic anhydrase II (HCA ...
DoctorIn past few decades, green-house gases, mainly CO2 has been growing concern. To handle this pr...
Biomimetic CO2 capture includes environmentally friendly solutions based on carbonic anhydrase (CA),...
Enhancing the functionalities and properties of enzymes via computational prediction is an emerging ...
Cellulose is the most abundant biopolymer on earth. Enzymatic degradation of this biopolymer is a cr...
Biomimetic CO2 capture includes environmentally friendly solutions based on carbonic anhydrase (CA),...
Carbonic anhydrase (CA) is a family of metalloenzymes that has the potential to sequestrate carbon d...
The stability of enzymes is critical for their application in industrial processes, which generally ...
The stability of enzymes is critical for their application in industrial processes, which generally ...
The stability of enzymes is critical for their application in industrial processes, which generally ...
Carbonic anhydrase can be used as an additive to improve the efficiency of carbon capture and utilis...
Exploiting carbonic anhydrase (CA), an enzyme that rapidly catalyzes carbon dioxide hydration, is an...
The selection of a biocatalyst for the development of a biomimetic CCS processes has several constra...
The selection of a biocatalyst for the development of a biomimetic CCS processes has several constra...
The selection of a biocatalyst for the development of a biomimetic CCS processes has several constra...
ABSTRACT: To find a disulfide pair that could stabilize the enzyme human carbonic anhydrase II (HCA ...
DoctorIn past few decades, green-house gases, mainly CO2 has been growing concern. To handle this pr...
Biomimetic CO2 capture includes environmentally friendly solutions based on carbonic anhydrase (CA),...
Enhancing the functionalities and properties of enzymes via computational prediction is an emerging ...
Cellulose is the most abundant biopolymer on earth. Enzymatic degradation of this biopolymer is a cr...
Biomimetic CO2 capture includes environmentally friendly solutions based on carbonic anhydrase (CA),...