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Fleury, F.

Publications and source records attributed to Fleury, F..

2 recordsLinked to original sources

Aurora A mediated new phosphorylation of RAD51 is observed in Nuclear Speckles

To maintain its genome integrity, the cell uses complementary and orchestrated processes, among which is the DNA Damage Response. Pre mRNA maturation is an essential step of the DNA damage response that provides an adapted proteome in order to face genotoxic stress. We describe here a new phosphorylation of the RAD51 recombinase, on its Ser97 residue. This new Aurora A mediated RAD51 phosphorylation modulates its in vitro activity evaluated by D-loop and polymerization assays. Using recombinant proteins, we show that RAD51 is an RNA binding protein and that the Ser97 phosphorylation modulates its RNA binding affinity in vitro. Using a specifically generated antibody we revealed that this Ser97 phosphorylation is correlated with RAD51 localization into the RNA maturation membrane less organelles, Nuclear Speckles. We describe here for the first time the presence of RAD51 DNA repair factor within the Nuclear Speckles, raising the hypothesis of a possible role for RAD51 in splicing modulation. This point is of particular interest in the context of splicing profiles modulations associated with radio and/or chemoresistance.

cell biology↗

Differentiation of thermal reaction norms between marginal and core populations of a northward expanding parasitoid

Understanding the speed of and the type of mechanisms that species use to adapt to rapid change is a central question in evolutionary biology. Classically, the two mechanisms denoted in the literature that allow individuals to address these environmental changes are either phenotypic plasticity or rapid evolutionary changes. However, phenotypic plasticity itself can evolve rapidly. In this study, we investigated the genetic differentiation between marginal and core populations of a high-trophic level insect, Leptopilina boulardi, a Drosophila parasitoid, which has exhibited a very rapid progression northward of its geographical range. Several life history traits have been investigated in different populations according to four fluctuating thermal regimes that mimic the thermal conditions in the field. We found that at low developmental temperature, the two northern marginal populations that have to face a colder winter, survive longer than the two core populations. In addition, the northernmost populations exhibit a higher potential fecundity, a higher starvation resistance and a larger amount of energy at low temperatures. These significant genetic differentiations with genotype-by-environment interactions show that a rapid genetic differentiation of the shape of thermal reaction norms is possible when populations have to cope with new environments.

evolutionary biology↗