The functionality of proteins is governed by their structure in the native state. Protein structures are made up of emergent building blocks of helices and almost planar sheets. A simple coarse-grained geometrical model of a flexible tube barely subject to compaction provides a unified framework for understanding the common character of globular proteins. We argue that a recent critique of the tube idea is not well founded
We present a simple physical model that demonstrates that the native-state folds of proteins can eme...
The size and origin of the protein fold universe is of fundamental and practical importance. Analyzi...
The native state structures of globular proteins are stable and well packed indicating that self-int...
The functionality of proteins is governed by their structure in the native state. Protein structures...
A framework is presented for understanding the common character of proteins. Proteins are linear cha...
A framework is presented for understanding the common character of proteins. Proteins are linear cha...
Proteins form a very important class of polymers. In spite of major advances in the understanding of...
Our work suggests that protein native state structures occupy a novel phase of matter corresponding ...
The protein folding problem has remained unsolved despite many decades of effort. Motivated by many ...
The intrinsic ability of protein structures to exhibit the geometric features required for molecular...
A conceptual framework for understanding the protein folding problem has remained elusive in spite o...
We present a model, based on symmetry and geometry, for proteins. Using elementary ideas from mathem...
Globular proteins are a critically important component of the network of life. We recently proposed ...
In nature, helical structures arise when identical structural subunits combine sequentially, the ori...
The intrinsic ability of protein structures to exhibit the geometric features required for molecular...
We present a simple physical model that demonstrates that the native-state folds of proteins can eme...
The size and origin of the protein fold universe is of fundamental and practical importance. Analyzi...
The native state structures of globular proteins are stable and well packed indicating that self-int...
The functionality of proteins is governed by their structure in the native state. Protein structures...
A framework is presented for understanding the common character of proteins. Proteins are linear cha...
A framework is presented for understanding the common character of proteins. Proteins are linear cha...
Proteins form a very important class of polymers. In spite of major advances in the understanding of...
Our work suggests that protein native state structures occupy a novel phase of matter corresponding ...
The protein folding problem has remained unsolved despite many decades of effort. Motivated by many ...
The intrinsic ability of protein structures to exhibit the geometric features required for molecular...
A conceptual framework for understanding the protein folding problem has remained elusive in spite o...
We present a model, based on symmetry and geometry, for proteins. Using elementary ideas from mathem...
Globular proteins are a critically important component of the network of life. We recently proposed ...
In nature, helical structures arise when identical structural subunits combine sequentially, the ori...
The intrinsic ability of protein structures to exhibit the geometric features required for molecular...
We present a simple physical model that demonstrates that the native-state folds of proteins can eme...
The size and origin of the protein fold universe is of fundamental and practical importance. Analyzi...
The native state structures of globular proteins are stable and well packed indicating that self-int...