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Biomedical subjects

F Ricard

Publications and source records attributed to F Ricard.

9 recordsLinked to original sources

Identification of 12 new yeast mitochondrial ribosomal proteins including 6 that have no prokaryotic homologues.

Mitochondrial ribosomal proteins were studied best in yeast, where the small subunit was shown to contain about 35 proteins. Yet, genetic and biochemical studies identified only 14 proteins, half of which were predictable by sequence homology with prokaryotic ribosomal components of the small subunit. Using a recently described affinity purification technique and tagged versions of yeast Ykl155c and Mrp1, we isolated this mitochondrial ribosomal subunit and identified a total of 20 proteins, of which 12 are new. For a subset of the newly described ribosomal proteins, we showed that they are localized in mitochondria and are required for the respiratory competency of the yeast cells. This brings to 26 the total number of proteins described as components of the mitochondrial small ribosomal subunit. Remarkably, almost half of the previously and newly identified mitochondrial ribosomal components showed no similarity to any known ribosomal protein. Homologues could be found, however, in predicted protein sequences from Schizosaccharomyces pombe. In more distant species, putative homologues were detected for Ykl155c, which shares conserved motifs with uncharacterized proteins of higher eukaryotes including humans. Another newly identified ribosomal protein, Ygl129c, was previously shown to be a member of the DAP-3 family of mitochondrial apoptosis mediators.

Amino Acid Sequence↗

Genome-wide protein interaction screens reveal functional networks involving Sm-like proteins.

A set of seven structurally related Sm proteins forms the core of the snRNP particles containing the spliceosomal U1, U2, U4 and U5 snRNAs. A search of the genomic sequence of Saccharomyces cerevisiae has identified a number of open reading frames that potentially encode structurally similar proteins termed Lsm (Like Sm) proteins. With the aim of analysing all possible interactions between the Lsm proteins and any protein encoded in the yeast genome, we performed exhaustive and iterative genomic two-hybrid screens, starting with the Lsm proteins as baits. Indeed, extensive interactions amongst eight Lsm proteins were found that suggest the existence of a Lsm complex or complexes. These Lsm interactions apparently involve the conserved Sm domain that also mediates interactions between the Sm proteins. The screens also reveal functionally significant interactions with splicing factors, in particular with Prp4 and Prp24, compatible with genetic studies and with the reported association of Lsm proteins with spliceosomal U6 and U4/U6 particles. In addition, interactions with proteins involved in mRNA turnover, such as Mrt1, Dcp1, Dcp2 and Xrn1, point to roles for Lsm complexes in distinct RNA metabolic processes, that are confirmed in independent functional studies. These results provide compelling evidence that two-hybrid screens yield functionally meaningful information about protein-protein interactions and can suggest functions for uncharacterized proteins, especially when they are performed on a genome-wide scale.

Fungal Proteins↗

Dynamic simulation of the mouse prion protein.

Conformational flexibility in the prion protein is believed to play a role in prion diseases. Here we examine the dynamic structure of the mouse cellular prion protein using two one-nanosecond molecular dynamics simulations from different initial conditions. The two simulations produce similar results. The overall structure remains close to that determined by nmr spectroscopy, with small deviations arising from loop fluctuation and slight changes in the relative helix positions. The sequence dependence of the fluctuation magnitudes is similar to the variation between the nmr-derived structure solutions. In both simulations, the N-terminal region of the protein forms a short, two-stranded beta-sheet, to which a third strand joins after approximately 100 ps. The additional strand may reflect nucleative properties of the beta-sheet required for disease-related prion conformational change.

Animals↗

[Depression and functional EEG asymmetry].

A new quantified EEG index (Alpha Burst Occurrence Variability Index: alpha BVI) has been devised in order to characterize sequential variations of alpha bursts in EEG. This index makes it possible to quantify slope variations of a cumulative graph (periodogram) where the rank of alpha bursts is traced as a function of their instant of arrival. Such quantitative analysis was applied to spontaneous EEG segments which were recorded in the parieto-occipital regions (P3-Fz and P4-Fz) during a rest period, in three groups of depressed patients, one being characterized by psychomotor retardation (PRM group), another one by an emotional blunting (EB group) and a group of impulsive depressed patients (I group). The patients were compared to a group of healthy control subjects. In the three patient groups, before treatment, it was observed that the right and left alpha BVI were significantly lower than those of the control subjects. The right hemisphere was involved in all cases, but the left hemisphere was involved only in severe cases. In the EB and I groups, two strong "electro-clinical" correlations were observed, each one being specific for each hemisphere, one relating the reduction of the right alpha BVI to the depressive mood, the other relating the reduction of the left alpha BVI to the degree of speech ("ideoverbal") retardation. These results emphasize the role of the right hemisphere in the probable pathogenesis of depression.

Adult↗