Surface models of biomolecules have become crucially important for the study and understanding of interaction between biomolecules and their environment. We argue for the need for a detailed understanding of biomolecular surfaces by describing several applications in computational and structural biology. We review methods used to model, represent, characterize, and visualize biomolecular surfaces focusing on the role that geometry and topology play in identifying features on the surface. These methods enable the development of efficient computational and visualization tools for studying the function of biomolecules
A substantial fraction of biomolecular processes occurs at interfaces. Interactions of proteins with...
International audienceWhile proteins and nucleic acids are the fundamental components of an organism...
We present an adaptive grid based algorithm to compute a family of relevant molecular surfaces. Mole...
Surface models of biomolecules have become crucially important for the study and understanding of in...
The homology search is one of the main strategies to assign a function to unknown proteins. In this ...
The design of future materials for biotechnological applications via deposition of molecules on surf...
International audienceThe design of future materials for biotechnological applications via depositio...
<p>Geometric modeling of biomolecules plays an important role in the study of biochemical processes....
Structural properties of molecules are of primary concern in many fields. This report provides a com...
〈Summary 〉 3D structure of proteins deeply relates to their functionality. It is well-known that fun...
Many areas of biochemistry and molecular biology, both fundamental and applications-orientated, requ...
In this paper we introduce a visualization technique that provides an abstracted view of the shape a...
Abstract With the development of biomolecular modeling and simulation, especially implicit solvent m...
The accessible surface of a macromolecule is a significant determinant of its action. The interactio...
Biology provides some of the most important and complex scientific challenges of our time. With the ...
A substantial fraction of biomolecular processes occurs at interfaces. Interactions of proteins with...
International audienceWhile proteins and nucleic acids are the fundamental components of an organism...
We present an adaptive grid based algorithm to compute a family of relevant molecular surfaces. Mole...
Surface models of biomolecules have become crucially important for the study and understanding of in...
The homology search is one of the main strategies to assign a function to unknown proteins. In this ...
The design of future materials for biotechnological applications via deposition of molecules on surf...
International audienceThe design of future materials for biotechnological applications via depositio...
<p>Geometric modeling of biomolecules plays an important role in the study of biochemical processes....
Structural properties of molecules are of primary concern in many fields. This report provides a com...
〈Summary 〉 3D structure of proteins deeply relates to their functionality. It is well-known that fun...
Many areas of biochemistry and molecular biology, both fundamental and applications-orientated, requ...
In this paper we introduce a visualization technique that provides an abstracted view of the shape a...
Abstract With the development of biomolecular modeling and simulation, especially implicit solvent m...
The accessible surface of a macromolecule is a significant determinant of its action. The interactio...
Biology provides some of the most important and complex scientific challenges of our time. With the ...
A substantial fraction of biomolecular processes occurs at interfaces. Interactions of proteins with...
International audienceWhile proteins and nucleic acids are the fundamental components of an organism...
We present an adaptive grid based algorithm to compute a family of relevant molecular surfaces. Mole...