The ultimate goal of functional genomics is to define the function of all the genes in the genome of an organism. A large body of information of the biological roles of genes has been accumulated and aggregated in the past decades of research, both from traditional experiments detailing the role of individual genes and proteins, and from newer experimental strategies that aim to characterize gene function on a genomic scale. It is clear that the goal of functional genomics can only be achieved by integrating information and data sources from the variety of these different experiments. Integration of different data is thus an important chal-lenge for bioinformatics. The integration of different data sources often helps to uncover non-obvious...
The currently known network of human protein-protein interactions (PPIs) is providing new insights i...
Abstract Most gene products facilitate their functions within complex interconnected networks by int...
Abstract Background The study of complex biological n...
The revolution in high throughput biology experiments producing genome-scale data has heightened the...
Recently, a number of advanced screening technologies have allowed for the comprehensive quantificat...
A major goal of biology is the construction of networks that predict complex system behavior. We com...
Abstract Background Identifying protein-protein interactions is fundamental for understanding the mo...
Motivation: Genomic and proteomic approaches have accumulated a huge amount of data which provide cl...
Over the past several decades, biology has become an increasingly data-driven science. Due in large ...
Mapping the complete functional layout of a cell and understanding the cross-talk between different ...
Motivation: The availability of genome-scale data has enabled an abundance of novel analysis techniq...
We propose a novel method to identify functionally related genes based on comparisons of neighborhoo...
Many successful functional studies by gene expression profiling in the literature have led to the pe...
Dramatic improvements in high throughput sequencing technologies have led to a staggering growth in ...
Dramatic improvements in high throughput sequencing technologies have led to a staggering growth in ...
The currently known network of human protein-protein interactions (PPIs) is providing new insights i...
Abstract Most gene products facilitate their functions within complex interconnected networks by int...
Abstract Background The study of complex biological n...
The revolution in high throughput biology experiments producing genome-scale data has heightened the...
Recently, a number of advanced screening technologies have allowed for the comprehensive quantificat...
A major goal of biology is the construction of networks that predict complex system behavior. We com...
Abstract Background Identifying protein-protein interactions is fundamental for understanding the mo...
Motivation: Genomic and proteomic approaches have accumulated a huge amount of data which provide cl...
Over the past several decades, biology has become an increasingly data-driven science. Due in large ...
Mapping the complete functional layout of a cell and understanding the cross-talk between different ...
Motivation: The availability of genome-scale data has enabled an abundance of novel analysis techniq...
We propose a novel method to identify functionally related genes based on comparisons of neighborhoo...
Many successful functional studies by gene expression profiling in the literature have led to the pe...
Dramatic improvements in high throughput sequencing technologies have led to a staggering growth in ...
Dramatic improvements in high throughput sequencing technologies have led to a staggering growth in ...
The currently known network of human protein-protein interactions (PPIs) is providing new insights i...
Abstract Most gene products facilitate their functions within complex interconnected networks by int...
Abstract Background The study of complex biological n...