AbstractIt should be possible to predict the fold of a protein into its native conformation, once we are given the sequence of the constituent amino acids. This is known as the protein structure prediction problem and is sometimes referred to as the problem of deciphering the second half of the genetic code. While large proteins fold in nature in seconds, computational chemists and biologists have found that folding proteins to their minimum energy conformations is a challenging unsolved optimization problem. Computational complexity theory has been useful in explaining, at least partially, this (Levinthal's) paradox. The pedagogic cross-disciplinary survey by Ngo, Marks and Karplus (Computational Complexity, Protein Structure Prediction an...
This research shows optimization approaches to protein folding. The protein folding problem is to pr...
Proteins are known to fold into tertiary structures that determine their functionality in living org...
Proteins are the most complicated molecules that exist in nature. Since protein structures are close...
It should be possible to predict the fold of a protein into its native conformation, once we are giv...
It should be possible to predict the fold of a protein into its native conformation, once we are giv...
It should be possible to predict the fold of a protein into its native conformation, once we are giv...
AbstractIt should be possible to predict the fold of a protein into its native conformation, once we...
It should be possible to predict the fold of a protein into its native conformation, once we are giv...
It should be possible to predict the fold of a protein into its native conformation, once we are giv...
A computational approach is essential whenever the complexity of the process under study is such tha...
Proteins have a unique native conformation, which can be proven in many instances to be determined b...
A computational approach is essential whenever the complexity of the process under study is such tha...
A computational approach is essential whenever the complexity of the process under study is such tha...
A computational approach is essential whenever the complexity of the process under study is such tha...
This research shows optimization approaches to protein folding. The protein folding problem is to pr...
This research shows optimization approaches to protein folding. The protein folding problem is to pr...
Proteins are known to fold into tertiary structures that determine their functionality in living org...
Proteins are the most complicated molecules that exist in nature. Since protein structures are close...
It should be possible to predict the fold of a protein into its native conformation, once we are giv...
It should be possible to predict the fold of a protein into its native conformation, once we are giv...
It should be possible to predict the fold of a protein into its native conformation, once we are giv...
AbstractIt should be possible to predict the fold of a protein into its native conformation, once we...
It should be possible to predict the fold of a protein into its native conformation, once we are giv...
It should be possible to predict the fold of a protein into its native conformation, once we are giv...
A computational approach is essential whenever the complexity of the process under study is such tha...
Proteins have a unique native conformation, which can be proven in many instances to be determined b...
A computational approach is essential whenever the complexity of the process under study is such tha...
A computational approach is essential whenever the complexity of the process under study is such tha...
A computational approach is essential whenever the complexity of the process under study is such tha...
This research shows optimization approaches to protein folding. The protein folding problem is to pr...
This research shows optimization approaches to protein folding. The protein folding problem is to pr...
Proteins are known to fold into tertiary structures that determine their functionality in living org...
Proteins are the most complicated molecules that exist in nature. Since protein structures are close...