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CHARMM at 45: Enhancements in Accessibility, Functionality, and Speed
Wonmuk Hwang1,2,3,4, Steven L Austin5, Arnaud Blondel6
1Department of Biomedical Engineering, Texas A&M University, College Station, Texas 77843, United States.
This review details recent advancements in CHARMM (Chemistry at HARvard Macromolecular Mechanics), a key computational tool for biochemistry and biophysics. It covers new simulation engines, user interfaces, and methods for biomolecular systems.
Area of Science:
- Computational Biochemistry
- Biophysics
- Molecular Modeling
Background:
- CHARMM (Chemistry at HARvard Macromolecular Mechanics) has been a foundational tool in computational biochemistry and biophysics for nearly 50 years.
- Continuous advancements in experimental research and computing power necessitate updates to computational methodologies.
Purpose of the Study:
- To review significant developments in CHARMM since its last comprehensive review in 2009.
- To provide an updated overview of CHARMM's capabilities and applications in biomolecular research.
Main Methods:
- Summarizing new simulation engines and computational approaches.
- Highlighting improvements in user interfaces for enhanced accessibility.
- Detailing advancements in simulation and analysis methods across quantum mechanical, atomistic, and coarse-grained levels.
- Reviewing expanded force field coverage.
Main Results:
- Introduction of faster simulation engines.
- Development of accessible user interfaces for streamlined workflows.
- Expansion of simulation and analysis methods for diverse biomolecular systems.
- Comprehensive updates to force fields.
Conclusions:
- CHARMM continues to evolve, offering a robust platform for contemporary and emerging challenges in biomolecular systems.
- The reviewed developments enhance the utility and accessibility of CHARMM for researchers.
- CHARMM remains a vital, freely available resource for academic and nonprofit research.
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