<div><p>The prioritization of candidate disease-causing genes is a fundamental challenge in the post-genomic era. Current state of the art methods exploit a protein-protein interaction (PPI) network for this task. They are based on the observation that genes causing phenotypically-similar diseases tend to lie close to one another in a PPI network. However, to date, these methods have used a static picture of human PPIs, while diseases impact specific tissues in which the PPI networks may be dramatically different. Here, for the first time, we perform a large-scale assessment of the contribution of tissue-specific information to gene prioritization. By integrating tissue-specific gene expression data with PPI information, we construct tissue...
Complex genetic disorders often involve products of multiple genes acting cooperatively. Hence, the ...
Complex biological systems usually pose a trade-off between robustness and fragility where a small n...
Complex genetic disorders often involve products of multiple genes acting cooperatively. Hence, the ...
An open question in human genetics is what underlies the tissue-specific manifestation of hereditary...
Enhancing the prioritization of disease-causing genes through tissue-specific protein-protein intera...
AbstractIdentifying candidate disease genes is important to improve medical care. However, this task...
Protein-protein interactions (PPI) play an essential role in the biological processes that occur in ...
Abstract Background The tissue specificity of gene expression has been linked to a number of signifi...
Complex biological systems usually pose a trade-off between robustness and fragility where a small n...
Abstract Background Although most of the current disease candidate gene identification and prioritiz...
Complex genetic disorders often involve products of multiple genes acting cooperatively. Hence, the ...
Construction and analyses of tissue specific networks is crucial to unveil the function and organiza...
Phenotypically similar diseases have been found to be caused by functionally related genes, suggesti...
Phenotypically similar diseases have been found to be caused by functionally related genes, suggesti...
<div><p>Construction and analyses of tissue specific networks is crucial to unveil the function and ...
Complex genetic disorders often involve products of multiple genes acting cooperatively. Hence, the ...
Complex biological systems usually pose a trade-off between robustness and fragility where a small n...
Complex genetic disorders often involve products of multiple genes acting cooperatively. Hence, the ...
An open question in human genetics is what underlies the tissue-specific manifestation of hereditary...
Enhancing the prioritization of disease-causing genes through tissue-specific protein-protein intera...
AbstractIdentifying candidate disease genes is important to improve medical care. However, this task...
Protein-protein interactions (PPI) play an essential role in the biological processes that occur in ...
Abstract Background The tissue specificity of gene expression has been linked to a number of signifi...
Complex biological systems usually pose a trade-off between robustness and fragility where a small n...
Abstract Background Although most of the current disease candidate gene identification and prioritiz...
Complex genetic disorders often involve products of multiple genes acting cooperatively. Hence, the ...
Construction and analyses of tissue specific networks is crucial to unveil the function and organiza...
Phenotypically similar diseases have been found to be caused by functionally related genes, suggesti...
Phenotypically similar diseases have been found to be caused by functionally related genes, suggesti...
<div><p>Construction and analyses of tissue specific networks is crucial to unveil the function and ...
Complex genetic disorders often involve products of multiple genes acting cooperatively. Hence, the ...
Complex biological systems usually pose a trade-off between robustness and fragility where a small n...
Complex genetic disorders often involve products of multiple genes acting cooperatively. Hence, the ...