International audienceDisease gene prediction is to date one of the main computational challenges of precision medicine. It is still uncertain if disease genes have unique functional properties that distinguish them from other non-disease genes or, from a network perspective, if they are located randomly in the interactome or show specific patterns in the network topology. In this study, we propose a new method for disease gene prediction based on the use of biological knowledge-bases (gene-disease associations, genes functional annotations, etc.) and interactome network topology. The proposed algorithm called MOSES is based on the definition of two somewhat opposing sets of genes both disease-specific from different perspectives: warm seed...
Phenotypically similar diseases have been found to be caused by functionally related genes, suggesti...
Motivation: Understanding the association between genetic diseases and their causal genes is an impo...
Abstract/nBACKGROUND: Scientists have been trying to understand the molecular mechanisms of diseases...
Disease gene prediction is to date one of the main computational challenges of precision medicine. I...
Disease gene prediction is to date one of the main computational challenges of precision medicine. I...
Network medicine approaches have been largely successful at increasing our knowledge of molecularly ...
Genes related to causing some disease are called disease-causing genes or disease genes. In wet-lab ...
For many complex diseases the cause/mechanism can be tied not to a single gene and in order to cope ...
In this study, we integrate the outcomes of co-expression network analysis with the human interactom...
Deciphering the genetic basis of human diseases is an important goal of biomedical research. On the ...
The discovery of human genes that contribute to the appearance and growth of hereditary diseases is ...
Life on earth is regulated by a complex system of interactions. Network Medicine models biological o...
Scientists have been trying to understand the molecular mechanisms of diseases to design preventive ...
Predicting candidate genes using gene expression profiles and unbiased protein-protein interactions ...
[Background] Clinical signs are a fundamental aspect of human pathologies. While di...
Phenotypically similar diseases have been found to be caused by functionally related genes, suggesti...
Motivation: Understanding the association between genetic diseases and their causal genes is an impo...
Abstract/nBACKGROUND: Scientists have been trying to understand the molecular mechanisms of diseases...
Disease gene prediction is to date one of the main computational challenges of precision medicine. I...
Disease gene prediction is to date one of the main computational challenges of precision medicine. I...
Network medicine approaches have been largely successful at increasing our knowledge of molecularly ...
Genes related to causing some disease are called disease-causing genes or disease genes. In wet-lab ...
For many complex diseases the cause/mechanism can be tied not to a single gene and in order to cope ...
In this study, we integrate the outcomes of co-expression network analysis with the human interactom...
Deciphering the genetic basis of human diseases is an important goal of biomedical research. On the ...
The discovery of human genes that contribute to the appearance and growth of hereditary diseases is ...
Life on earth is regulated by a complex system of interactions. Network Medicine models biological o...
Scientists have been trying to understand the molecular mechanisms of diseases to design preventive ...
Predicting candidate genes using gene expression profiles and unbiased protein-protein interactions ...
[Background] Clinical signs are a fundamental aspect of human pathologies. While di...
Phenotypically similar diseases have been found to be caused by functionally related genes, suggesti...
Motivation: Understanding the association between genetic diseases and their causal genes is an impo...
Abstract/nBACKGROUND: Scientists have been trying to understand the molecular mechanisms of diseases...