Thesis (Ph.D.)--Boston UniversityHow cellular elements coordinate their function is a fundamental question in biology. A crucial step towards understanding cellular systems is the mapping of physical interactions between protein, DNA, RNA and other macromolecules or metabolites. Genome-scale technologies have yielded protein-protein interaction networks for several eukaryotic species and have provided insight into biological processes and evolution, but many of the currently available networks are biased. Towards a true human protein-protein interaction network, we examined literature-based aggregations of lowthroughput experiments, high-throughput experimental networks validated using different strategies, and predicted interaction network...
Plants have unique features that evolved in response to their environments and ecosystems. A full ac...
Plants have unique features that evolved in response to their environments and ecosystems. A full ac...
Plants have unique features that evolved in response to their environments and ecosystems. A full ac...
In cellular systems, biophysical interactions between macromolecules underlie a complex web of funct...
peer reviewedIn cellular systems, biophysical interactions between macromolecules underlie a complex...
Abstract In cellular systems, biophysical interactions between macromolecules underlie a complex web...
In cellular systems, biophysical interactions between macromolecules underlie a complex web of funct...
Proteins function primarily by physically interacting with other proteins. As such, maps of these in...
Abstract Background Protein-protein interaction (PPI)...
Progress in uncovering the protein interaction networks of several species has led to questions of w...
Individual proteins, and small collections of proteins, have been extensively studied for at least t...
Progress in uncovering the protein interaction networks of several species has led to questions of w...
Individual proteins, and small collections of proteins, have been extensively studied for at least t...
Abstract Background Protein-protein interaction (PPI)...
International audiencePlants have unique features that evolved in response to their environments and...
Plants have unique features that evolved in response to their environments and ecosystems. A full ac...
Plants have unique features that evolved in response to their environments and ecosystems. A full ac...
Plants have unique features that evolved in response to their environments and ecosystems. A full ac...
In cellular systems, biophysical interactions between macromolecules underlie a complex web of funct...
peer reviewedIn cellular systems, biophysical interactions between macromolecules underlie a complex...
Abstract In cellular systems, biophysical interactions between macromolecules underlie a complex web...
In cellular systems, biophysical interactions between macromolecules underlie a complex web of funct...
Proteins function primarily by physically interacting with other proteins. As such, maps of these in...
Abstract Background Protein-protein interaction (PPI)...
Progress in uncovering the protein interaction networks of several species has led to questions of w...
Individual proteins, and small collections of proteins, have been extensively studied for at least t...
Progress in uncovering the protein interaction networks of several species has led to questions of w...
Individual proteins, and small collections of proteins, have been extensively studied for at least t...
Abstract Background Protein-protein interaction (PPI)...
International audiencePlants have unique features that evolved in response to their environments and...
Plants have unique features that evolved in response to their environments and ecosystems. A full ac...
Plants have unique features that evolved in response to their environments and ecosystems. A full ac...
Plants have unique features that evolved in response to their environments and ecosystems. A full ac...