International audienceBACKGROUND: Identifying the genotypes underlying human disease phenotypes is a fundamental step in human genetics and medicine. High-throughput genomic technologies provide thousands of genetic variants per individual. The causal genes of a specific phenotype are usually expected to be functionally close to each other. According to this hypothesis, candidate genes are picked from high-throughput data on the basis of their biological proximity to core genes -- genes already known to be responsible for the phenotype. There is currently no effective gene-centric online interface for this purpose. RESULTS: We describe here the human gene connectome server (HGCS), a powerful, easy-to-use interactive online tool enabling res...
Contains fulltext : 33210.pdf (publisher's version ) (Open Access)Disease gene ide...
HGCS: an online tool for prioritizing disease-causing gene variants by biological distance Itan et a...
Recent advances in genome-wide association studies (GWAS) have enabled us to identify thou-sands of ...
International audienceBACKGROUND: Identifying the genotypes underlying human disease phenotypes is a...
HGCS: an online tool for prioritizing disease-causing gene variants by biological distance Itan et a...
The identification of genes responsible for human disease enables an understanding of disease mechan...
Summary: In analyses of exome data, candidate gene selection can be challenging in the absence of va...
To identify the gene underlying a human genetic disorder can be difficult and time-consuming. Typica...
Item does not contain fulltextTo identify the gene underlying a human genetic disorder can be diffic...
Contains fulltext : 50505.pdf (publisher's version ) (Closed access)Most common ge...
Most common genetic disorders have a complex inheritance and may result from variants in many genes,...
Most common genetic disorders have a complex inheritance and may result from variants in many genes,...
Genome and exome sequencing projects produce huge amount of data, which in turns can yield extensive...
BACKGROUND: Linkage studies often yield intervals containing several hundred positional candidate ge...
Background: Pinpointing genes involved in inherited human diseases remains a great challenge in the ...
Contains fulltext : 33210.pdf (publisher's version ) (Open Access)Disease gene ide...
HGCS: an online tool for prioritizing disease-causing gene variants by biological distance Itan et a...
Recent advances in genome-wide association studies (GWAS) have enabled us to identify thou-sands of ...
International audienceBACKGROUND: Identifying the genotypes underlying human disease phenotypes is a...
HGCS: an online tool for prioritizing disease-causing gene variants by biological distance Itan et a...
The identification of genes responsible for human disease enables an understanding of disease mechan...
Summary: In analyses of exome data, candidate gene selection can be challenging in the absence of va...
To identify the gene underlying a human genetic disorder can be difficult and time-consuming. Typica...
Item does not contain fulltextTo identify the gene underlying a human genetic disorder can be diffic...
Contains fulltext : 50505.pdf (publisher's version ) (Closed access)Most common ge...
Most common genetic disorders have a complex inheritance and may result from variants in many genes,...
Most common genetic disorders have a complex inheritance and may result from variants in many genes,...
Genome and exome sequencing projects produce huge amount of data, which in turns can yield extensive...
BACKGROUND: Linkage studies often yield intervals containing several hundred positional candidate ge...
Background: Pinpointing genes involved in inherited human diseases remains a great challenge in the ...
Contains fulltext : 33210.pdf (publisher's version ) (Open Access)Disease gene ide...
HGCS: an online tool for prioritizing disease-causing gene variants by biological distance Itan et a...
Recent advances in genome-wide association studies (GWAS) have enabled us to identify thou-sands of ...