Antibodies are proteins generated by the adaptive immune system to recognize and counteract a plethora of pathogens through specific binding. This adaptive binding is mediated by structural diversity in the six complementary determining region (CDR) loops (H1, H2, H3, L1, L2 and L3), which also makes accurate structural modeling of CDRs challenging. Both homology and de novo modeling approaches have been used; to date, the former has achieved greater accuracy for the non-H3 loops. The homology modeling of non-H3 CDRs is more accurate because non-H3 CDR loops of the same length and type can be grouped into a few structural clusters. Most antibody-modeling suites utilize homology modeling for the non-H3 CDRs, differing only in the alignment a...
In recent years, the observed antibody sequence space has grown exponentially due to advances in hig...
In recent decades, antibodies have emerged as indispensable therapeutics for combating diseases, par...
Computational modelling of antibody structures plays a critical role in therapeutic antibody design....
Protein structure prediction has gained increased attention over the past decades in a wide range of...
Antibodies - key molecules of the immune system - are increasingly used as ther- apeutic drugs. The ...
Antibodies are used extensively in medical and biological research. Their complementarity determinin...
International audienceAntibodies are able to recognize a wide range of antigens through their comple...
Antibodies are important immunological molecules that can bind a diverse array of foreign molecules....
Classification of antibody complementarity-determining region (CDR) conformations is an important st...
Motivation Antibodies are a key component of the immune system and have been extensively used as bio...
Complementarity-determining regions (CDRs) are antibody loops that make up the antigen binding site....
The accurate prediction of the conformation of Complementarity-Determining Regions (CDRs) is importa...
Monoclonal antibodies bind with high specificity to a wide range of diverse antigens, primarily medi...
Motivation: Antibodies are able to recognize a wide range of antigens through their complementary de...
Computational modelling of antibody structures plays a critical role in therapeutic antibody design....
In recent years, the observed antibody sequence space has grown exponentially due to advances in hig...
In recent decades, antibodies have emerged as indispensable therapeutics for combating diseases, par...
Computational modelling of antibody structures plays a critical role in therapeutic antibody design....
Protein structure prediction has gained increased attention over the past decades in a wide range of...
Antibodies - key molecules of the immune system - are increasingly used as ther- apeutic drugs. The ...
Antibodies are used extensively in medical and biological research. Their complementarity determinin...
International audienceAntibodies are able to recognize a wide range of antigens through their comple...
Antibodies are important immunological molecules that can bind a diverse array of foreign molecules....
Classification of antibody complementarity-determining region (CDR) conformations is an important st...
Motivation Antibodies are a key component of the immune system and have been extensively used as bio...
Complementarity-determining regions (CDRs) are antibody loops that make up the antigen binding site....
The accurate prediction of the conformation of Complementarity-Determining Regions (CDRs) is importa...
Monoclonal antibodies bind with high specificity to a wide range of diverse antigens, primarily medi...
Motivation: Antibodies are able to recognize a wide range of antigens through their complementary de...
Computational modelling of antibody structures plays a critical role in therapeutic antibody design....
In recent years, the observed antibody sequence space has grown exponentially due to advances in hig...
In recent decades, antibodies have emerged as indispensable therapeutics for combating diseases, par...
Computational modelling of antibody structures plays a critical role in therapeutic antibody design....