AbstractHIV-1 protease is a major drug target against AIDS as it permits viral maturation by processing the gag and pol polyproteins of the virus. The cleavage sites in these polyproteins do not have obvious sequence homology or a binding motif and the specificity of the protease is not easily determined. We used various threading approaches, together with the crystal structures of substrate complexes which served as template structures, to study the substrate specificity of HIV-1 protease with the aim of obtaining a better differentiation between binding and nonbinding sequences. The predictions from threading improved when distance-dependent interaction energy functions were used instead of contact matrices. To rank the peptides and prope...
The specificity of the retroviral protease is determined by the ability of substrate amino acid side...
Drug resistance in HIV-1 protease, a barrier to effective treatment, is generally caused by mutation...
HIV-1 protease recognizes and cleaves more than 12 different substrates leading to viral maturation....
AbstractHIV-1 protease is a major drug target against AIDS as it permits viral maturation by process...
HIV-1 protease is a major drug target against AIDS as it permits viral maturation by processing the ...
SummaryDrug-resistant mutations (DRMs) in HIV-1 protease are a major challenge to antiretroviral the...
The homodimeric HIV-1 protease is the target of some of the most effective antiviral AIDS therapy, a...
Rapidly developing viral resistance to licensed human immunodeficiency virus type 1 (HIV-1) protease...
Rapidly developing viral resistance to licensed human immunodeficiency virus type 1 (HIV-1) protease...
Rapidly developing viral resistance to licensed human immunodeficiency virus type 1 (HIV-1) protease...
In designing HIV protease inhibitors as potential drugs for AIDS therapy, knowledge about what pepti...
AbstractThe recognition sequences for substrate cleavage by aspartic protease of HIV-1 are diverse a...
HIV-1 protease represents an appealing system for directed enzyme re-design, since it has various di...
HIV-1 protease recognizes and cleaves more than 12 different substrates leading to viral maturation....
The specificity of the retroviral protease is determined by the ability of substrate amino acid side...
The specificity of the retroviral protease is determined by the ability of substrate amino acid side...
Drug resistance in HIV-1 protease, a barrier to effective treatment, is generally caused by mutation...
HIV-1 protease recognizes and cleaves more than 12 different substrates leading to viral maturation....
AbstractHIV-1 protease is a major drug target against AIDS as it permits viral maturation by process...
HIV-1 protease is a major drug target against AIDS as it permits viral maturation by processing the ...
SummaryDrug-resistant mutations (DRMs) in HIV-1 protease are a major challenge to antiretroviral the...
The homodimeric HIV-1 protease is the target of some of the most effective antiviral AIDS therapy, a...
Rapidly developing viral resistance to licensed human immunodeficiency virus type 1 (HIV-1) protease...
Rapidly developing viral resistance to licensed human immunodeficiency virus type 1 (HIV-1) protease...
Rapidly developing viral resistance to licensed human immunodeficiency virus type 1 (HIV-1) protease...
In designing HIV protease inhibitors as potential drugs for AIDS therapy, knowledge about what pepti...
AbstractThe recognition sequences for substrate cleavage by aspartic protease of HIV-1 are diverse a...
HIV-1 protease represents an appealing system for directed enzyme re-design, since it has various di...
HIV-1 protease recognizes and cleaves more than 12 different substrates leading to viral maturation....
The specificity of the retroviral protease is determined by the ability of substrate amino acid side...
The specificity of the retroviral protease is determined by the ability of substrate amino acid side...
Drug resistance in HIV-1 protease, a barrier to effective treatment, is generally caused by mutation...
HIV-1 protease recognizes and cleaves more than 12 different substrates leading to viral maturation....