The design of new biocatalysts is a goal in biotechnology to improve the rate, selectivity and environmental impact of industrial chemical processes. In this regard, the use of computational techniques has provided valuable assistance in the design of new enzymes with remarkable catalytic activity. In this paper, hybrid QM/MM molecular dynamics simulations have allowed insights to be gained on the origin of the limited efficiency of a computationally designed enzyme for the Kemp elimination; the HG-3. Comparison of results derived from this enzyme with those of a more evolved protein containing additional point mutations, HG-3.17, rendered important information that should be taken into account in the design of new enzymes. For this Kemp el...
This is a series of investigations into the molecular basis of the evolution of new protein fun...
Despite advances in computational design of protein structures, it has proven very difficult to desi...
The development of reliable methods for the 'on demand" de novo design of an enzymatic catalyst for ...
A recently designed enzyme, HG3.17, obtained by directed evolution, has shown a catalytic activity c...
A general approach for the computational design of enzymes to catalyze arbitrary reactions is a goal...
A recently designed enzyme, HG3.17, obtained by directed evolution, has shown a catalytic activity c...
AbstractUnderstanding and Improving Designed Enzymes by Computer SimulationsBy Asmit BhowmickDoctor ...
Here we report a computational method to improve efficiency of a de novo designed Kemp eliminase enz...
The routine generation of enzymes with completely new active sites is a major unsolved problem in pr...
We report electric field values relevant to the reactant and transition states of designed Kemp elim...
Linus Pauling established the conceptual framework for understanding and mimicking enzymes more than...
Restricted until 4 Nov. 2011.Naturally occurring enzymes are exceptional catalysts. One of the most ...
Here we report a computational method to improve efficiency of a de novo designed Kemp eliminase enz...
Developments in computational chemistry, bioinformatics, and laboratory evolution have facilitated t...
Directed evolution has revolutionized protein engineering. Still, enzyme optimization by random libr...
This is a series of investigations into the molecular basis of the evolution of new protein fun...
Despite advances in computational design of protein structures, it has proven very difficult to desi...
The development of reliable methods for the 'on demand" de novo design of an enzymatic catalyst for ...
A recently designed enzyme, HG3.17, obtained by directed evolution, has shown a catalytic activity c...
A general approach for the computational design of enzymes to catalyze arbitrary reactions is a goal...
A recently designed enzyme, HG3.17, obtained by directed evolution, has shown a catalytic activity c...
AbstractUnderstanding and Improving Designed Enzymes by Computer SimulationsBy Asmit BhowmickDoctor ...
Here we report a computational method to improve efficiency of a de novo designed Kemp eliminase enz...
The routine generation of enzymes with completely new active sites is a major unsolved problem in pr...
We report electric field values relevant to the reactant and transition states of designed Kemp elim...
Linus Pauling established the conceptual framework for understanding and mimicking enzymes more than...
Restricted until 4 Nov. 2011.Naturally occurring enzymes are exceptional catalysts. One of the most ...
Here we report a computational method to improve efficiency of a de novo designed Kemp eliminase enz...
Developments in computational chemistry, bioinformatics, and laboratory evolution have facilitated t...
Directed evolution has revolutionized protein engineering. Still, enzyme optimization by random libr...
This is a series of investigations into the molecular basis of the evolution of new protein fun...
Despite advances in computational design of protein structures, it has proven very difficult to desi...
The development of reliable methods for the 'on demand" de novo design of an enzymatic catalyst for ...