Loop building and refinement:
PrimeX builds loops up to 40-residues in length, using technologies in the well-validated Prime protein modeling program and guided by electron density fit.
Ligand placement:
PrimeX places ligands and other small molecules into electron density using technologies in the Glide docking program, which has demonstrated superior accuracy in ligand-receptor docking.
Accurate all-atom force field:
PrimeX utilizes the OPLS-AA force field with state-of-the-art computational technologies to refine protein structures that are immediately ready for all computational simulations.
Advanced refinement techniques:
PrimeX provides simulated annealing for reciprocal space refinement.
Choice of minimizers:
PrimeX offers conjugate gradient, truncated Newton, and quasi-Newton (LBFGS) to optimize performance and accuracy.
Automatic parameter generation:
PrimeX generates parameters for ligands and other small molecules, as well as modified residues, automatically without requiring user intervention.
Treatment of hydrogens:
PrimeX automatically adds hydrogens, which are included during refinement according to physical chemistry as prescribed by the OPLS-AA force field.
Easy to use:
PrimeX's intuitive user interface is integrated into Maestro with step-by-step organization of refinement statistics in the Project Table and convenient analysis of protein structure geometry through interactive tables and plots.
Advanced calculational controls:
PrimeX allows command-line input as well as scripting with Python for added control and customizable operations.