TY - CHAP
T1 - Proteus and the design of ligand binding sites
AU - Polydorides, Savvas
AU - Michael, Eleni
AU - Mignon, David
AU - Druart, Karen
AU - Archontis, Georgios
AU - Simonson, Thomas
N1 - Publisher Copyright:
© Springer Science+Business Media New York 2016.
PY - 2016/5/1
Y1 - 2016/5/1
N2 - This chapter describes the organization and use of Proteus, a multitool computational suite for the optimization of protein and ligand conformations and sequences, and the calculation of pKα shifts and relative binding affinities. The software offers the use of several molecular mechanics force fields and solvent models, including two generalized Born variants, and a large range of scoring functions, which can combine protein stability, ligand affinity, and ligand specificity terms, for positive and negative design. We present in detail the steps for structure preparation, system setup, construction of the interaction energy matrix, protein sequence and structure optimizations, pKα calculations, and ligand titration calculations. We discuss illustrative examples, including the chemical/structural optimization of a complex between the MHC class II protein HLA-DQ8 and the vinculin epitope, and the chemical optimization of the compstatin analog Ac-Val4Trp/His9Ala, which regulates the function of protein C3 of the complement system.
AB - This chapter describes the organization and use of Proteus, a multitool computational suite for the optimization of protein and ligand conformations and sequences, and the calculation of pKα shifts and relative binding affinities. The software offers the use of several molecular mechanics force fields and solvent models, including two generalized Born variants, and a large range of scoring functions, which can combine protein stability, ligand affinity, and ligand specificity terms, for positive and negative design. We present in detail the steps for structure preparation, system setup, construction of the interaction energy matrix, protein sequence and structure optimizations, pKα calculations, and ligand titration calculations. We discuss illustrative examples, including the chemical/structural optimization of a complex between the MHC class II protein HLA-DQ8 and the vinculin epitope, and the chemical optimization of the compstatin analog Ac-Val4Trp/His9Ala, which regulates the function of protein C3 of the complement system.
KW - Generalized Born model
KW - Implicit solvent
KW - Ligand design
KW - Monte Carlo
KW - Protein design
UR - https://www.scopus.com/pages/publications/84964310685
U2 - 10.1007/978-1-4939-3569-7_6
DO - 10.1007/978-1-4939-3569-7_6
M3 - Chapter
C2 - 27094287
AN - SCOPUS:84964310685
T3 - Methods in Molecular Biology
SP - 77
EP - 97
BT - Methods in Molecular Biology
PB - Humana Press Inc.
ER -