We present a novel multi-conformation Monte Carlo simulation method that enables the modeling of protein–protein interactions and aggregation in crowded protein solutions. This approach is relevant to a molecular-scale description of realistic biological environments, including the cytoplasm and the extracellular matrix, which are characterized by high concentrations of biomolecular solutes (e.g., 300–400 mg/mL for proteins and nucleic acids in the cytoplasm of Escherichia coli). Simulation of such environments necessitates the inclusion of a large number of protein molecules. Therefore, computationally inexpensive methods, such as rigid-body Brownian dynamics (BD) or Monte Carlo simulations, can be particularly useful. However, as we demon...
A new high-coordination lattice model of polypeptide chains has been designed and tested. The model ...
Over the past three decades, a number of powerful simulation algorithms have been introduced to the ...
There are many challenges involved in the simulation of DNA. In this work, novel Monte Carlo techniq...
We present a novel multi-conformation Monte Carlo simulation method that enables the modeling of pro...
A novel multiple conformations Monte Carlo (mcMC) computational method is presented that allows the ...
Efficient computational modeling of biological systems characterized by high concentrations of macro...
Efficient computational modeling of biological systems characterized by high concentrations of macro...
Biological environments are typically referred to as "crowded" due to presence of distinct biomolecu...
Realistic biological conditions are characterized by high concentrations of biomolecular solutes. Pr...
We develop coarse-grained models and effective energy functions for simulating thermodynamic and str...
A better understanding of life at a microscopic level permits the formulation of better drugs, the ...
Most of the protein–protein docking methods treat proteins as almost rigid objects. Only the side-ch...
A multiscale, modular approach to protein sampling with novel Monte Carlo algorithms is is presented...
Fluctuations of protein three-dimensional structures and large-scale conformational transitions are ...
Macromolecular structures, such as neuraminidases, hemagglutinins, and monoclonal antibodies, are no...
A new high-coordination lattice model of polypeptide chains has been designed and tested. The model ...
Over the past three decades, a number of powerful simulation algorithms have been introduced to the ...
There are many challenges involved in the simulation of DNA. In this work, novel Monte Carlo techniq...
We present a novel multi-conformation Monte Carlo simulation method that enables the modeling of pro...
A novel multiple conformations Monte Carlo (mcMC) computational method is presented that allows the ...
Efficient computational modeling of biological systems characterized by high concentrations of macro...
Efficient computational modeling of biological systems characterized by high concentrations of macro...
Biological environments are typically referred to as "crowded" due to presence of distinct biomolecu...
Realistic biological conditions are characterized by high concentrations of biomolecular solutes. Pr...
We develop coarse-grained models and effective energy functions for simulating thermodynamic and str...
A better understanding of life at a microscopic level permits the formulation of better drugs, the ...
Most of the protein–protein docking methods treat proteins as almost rigid objects. Only the side-ch...
A multiscale, modular approach to protein sampling with novel Monte Carlo algorithms is is presented...
Fluctuations of protein three-dimensional structures and large-scale conformational transitions are ...
Macromolecular structures, such as neuraminidases, hemagglutinins, and monoclonal antibodies, are no...
A new high-coordination lattice model of polypeptide chains has been designed and tested. The model ...
Over the past three decades, a number of powerful simulation algorithms have been introduced to the ...
There are many challenges involved in the simulation of DNA. In this work, novel Monte Carlo techniq...