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Biomedical subjects

Nicolas Goffard

Publications and source records attributed to Nicolas Goffard.

4 recordsLinked to original sources

New strategy for the representation and the integration of biomolecular knowledge at a cellular scale.

The combination of sequencing and post-sequencing experimental approaches produces huge collections of data that are highly heterogeneous both in structure and in semantics. We propose a new strategy for the integration of such data. This strategy uses structured sets of sequences as a unified representation of biological information and defines a probabilistic measure of similarity between the sets. Sets can be composed of sequences that are known to have a biological relationship (e.g. proteins involved in a complex or a pathway) or that share similar values for a particular attribute (e.g. expression profile). We have developed a software, BlastSets, which implements this strategy. It exploits a database where the sets derived from diverse biological information can be deposited using a standard XML format. For a given query set, BlastSets returns target sets found in the database whose similarity to the query is statistically significant. The tool allowed us to automatically identify verified relationships between correlated expression profiles and biological pathways using publicly available data for Saccharomyces cerevisiae. It was also used to retrieve the members of a complex (ribosome) based on the mining of expression profiles. These first results validate the relevance of the strategy and demonstrate the promising potential of BlastSets.

Computational Biology↗

Genome evolution in yeasts.

Identifying the mechanisms of eukaryotic genome evolution by comparative genomics is often complicated by the multiplicity of events that have taken place throughout the history of individual lineages, leaving only distorted and superimposed traces in the genome of each living organism. The hemiascomycete yeasts, with their compact genomes, similar lifestyle and distinct sexual and physiological properties, provide a unique opportunity to explore such mechanisms. We present here the complete, assembled genome sequences of four yeast species, selected to represent a broad evolutionary range within a single eukaryotic phylum, that after analysis proved to be molecularly as diverse as the entire phylum of chordates. A total of approximately 24,200 novel genes were identified, the translation products of which were classified together with Saccharomyces cerevisiae proteins into about 4,700 families, forming the basis for interspecific comparisons. Analysis of chromosome maps and genome redundancies reveal that the different yeast lineages have evolved through a marked interplay between several distinct molecular mechanisms, including tandem gene repeat formation, segmental duplication, a massive genome duplication and extensive gene loss.

Chromosomes, Fungal↗

AliasServer: a web server to handle multiple aliases used to refer to proteins.

UNLABELLED: AliasServer provides services that facilitate the assembly of data or datasets that make use of different identifiers for refering to the same protein. This resource relies on a database which contains, for a given organism, a non-redundant list of protein sequences associated with a set of aliases. AVAILABILITY: AliasServer is available as an interactive Web server at http://cbi.labri.fr/outils/alias/ and as a web service using a SOAP interface. The complete tool, including sources and data, is available for local installations upon request. SUPPLEMENTARY INFORMATION: Technical documentation is available at http://cbi.labri.fr/outils/alias/asdoc.pdf

Algorithms↗

IPPRED: server for proteins interactions inference.

SUMMARY: IPPRED is a web based server to infer protein-protein interactions through homology search between candidate proteins and those described as interacting. This simple inference allows to propose or to validate potential interactions. AVAILABILITY: IPPRED is freely available at http://cbi.labri.fr/outils/ippred/.

Algorithms↗