Recent advances in protein design have opened avenues for the creation of artificial enzymes needed for biotechnological and pharmaceutical applications. However, designing efficient enzymes remains an unrealized ambition, as the design must incorporate a catalytic apparatus specific for the desired reaction. Here we present a de novo design approach to evolve a minimal carbonic anhydrase mimic. We followed a step-by-step design of first folding the main chain followed by sequence variation for substrate binding and catalysis. To optimize the fold, we designed an alpha beta beta protein based on a Zn-finger. We then inverse-designed the sequences to provide stability to the fold along with flexibility of linker regions to optimize Zn bindin...
Enzymes are large biomolecules which catalyze complex reactions with high selectivity and ...
Proteins have desirable functionality in applications other than that of their biological origin, su...
The design of enzyme-like catalysts tests our understanding of sequence-to-structure/function relati...
Recent advances in protein design have opened avenues for the creation of artificial enzymes needed ...
<div><p>Recent advances in protein design have opened avenues for the creation of artificial enzymes...
Recent advances in protein design have opened avenues for the creation of artificial enzymes needed ...
Protein design will ultimately allow for the creation of artificial enzymes with novel functions and...
To improve our mechanistic understanding of zinc metalloenzymes, we report a joint computational and...
International audienceHydrolytic zinc enzymes are common targets for protein design. The versatility...
Enzymatic activity is crucial for various technological applications, yet the complex structures and...
We have incorporated a bicyclic beta-turn mimetic (BTD; beta-turn dipeptide) into a zinc finger, cre...
International audienceHydrolytic zinc enzymes are common targets for protein design. The versatility...
International audienceHydrolytic zinc enzymes are common targets for protein design. The versatility...
International audienceHydrolytic zinc enzymes are common targets for protein design. The versatility...
We developed an artificial hydrolase based on the symmetrical Pizza6 β-propeller protein for the met...
Enzymes are large biomolecules which catalyze complex reactions with high selectivity and ...
Proteins have desirable functionality in applications other than that of their biological origin, su...
The design of enzyme-like catalysts tests our understanding of sequence-to-structure/function relati...
Recent advances in protein design have opened avenues for the creation of artificial enzymes needed ...
<div><p>Recent advances in protein design have opened avenues for the creation of artificial enzymes...
Recent advances in protein design have opened avenues for the creation of artificial enzymes needed ...
Protein design will ultimately allow for the creation of artificial enzymes with novel functions and...
To improve our mechanistic understanding of zinc metalloenzymes, we report a joint computational and...
International audienceHydrolytic zinc enzymes are common targets for protein design. The versatility...
Enzymatic activity is crucial for various technological applications, yet the complex structures and...
We have incorporated a bicyclic beta-turn mimetic (BTD; beta-turn dipeptide) into a zinc finger, cre...
International audienceHydrolytic zinc enzymes are common targets for protein design. The versatility...
International audienceHydrolytic zinc enzymes are common targets for protein design. The versatility...
International audienceHydrolytic zinc enzymes are common targets for protein design. The versatility...
We developed an artificial hydrolase based on the symmetrical Pizza6 β-propeller protein for the met...
Enzymes are large biomolecules which catalyze complex reactions with high selectivity and ...
Proteins have desirable functionality in applications other than that of their biological origin, su...
The design of enzyme-like catalysts tests our understanding of sequence-to-structure/function relati...