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In Silico
prediction of mutant HIV-1 proteases cleaving a target sequence
Jan Halborg Jensen
,
Martin Willemoës
,
Jakob R. Winther
, Luca De Vico
Department of Chemistry
Biomolecular Sciences
10
Citations (Scopus)
1496
Downloads (Pure)
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Dive into the research topics of '
In Silico
prediction of mutant HIV-1 proteases cleaving a target sequence'. Together they form a unique fingerprint.
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Mathematics
Protease
100%
Mutant
78%
Target
52%
Prediction
49%
Peptides
37%
Specificity
32%
Enzymes
21%
Methodology
12%
Substrate
10%
Computational Algorithm
10%
Predict
8%
Energy
5%
Design
5%
Earth & Environmental Sciences
human immunodeficiency virus
78%
mutant
65%
peptide
31%
prediction
30%
enzyme
16%
methodology
11%
substrate
7%
energy
5%
Agriculture & Biology
Human immunodeficiency virus 1
76%
proteinases
46%
prediction
42%
mutants
36%
peptides
18%
enzymes
7%
energy
5%
methodology
4%
Medicine & Life Sciences
Human immunodeficiency virus 1 p16 protease
92%
Computer Simulation
58%
Peptides
19%
Enzymes
11%
Peptide Hydrolases
8%
Engineering & Materials Science
Peptide Hydrolases
93%
Peptides
34%
Enzymes
20%
Substrates
6%