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Biology subjects

Marie, S.

Publications and source records attributed to Marie, S..

3 recordsLinked to original sources

Metabolic and Neurobehavioral Disturbances Induced by Purine Recycling Deficiency in Drosophila

Adenine phosphoribosyltransferase (APRT) and hypoxanthine-guanine phosphoribosyltransferase (HGPRT) are two structurally related enzymes involved in purine recycling in humans. Inherited mutations that suppress HGPRT activity are associated with Lesch-Nyhan disease (LND), a rare X-linked metabolic and neurological disorder in children, characterized by hyperuricemia, dystonia and compulsive self-injury. To date, no treatment is available for these neurological defects and no animal model recapitulates all symptoms of LND patients. Here we studied LND-related mechanisms in the fruit fly. By combining enzymatic assays and phylogenetic analysis, we confirm that no HGPRT activity is expressed in Drosophila melanogaster, making the APRT homologue (Aprt) the only purine-recycling enzyme in this organism. Whereas APRT deficiency does not trigger neurological defects in humans, we observed that Drosophila Aprt mutants show both metabolic and neurobehavioral disturbances, including increased uric acid levels, locomotor impairments, sleep alterations, seizure-like behavior, reduced lifespan, and reduction of adenosine signaling and content. Locomotor defects could be rescued by Aprt re-expression in neurons and reproduced by knocking down Aprt selectively in the protocerebral anterior medial (PAM) dopaminergic neurons, the mushroom bodies or glia subsets. Ingestion of allopurinol rescued uric acid levels in Aprt-deficient mutants but not neurological defects, as is the case in LND patients, while feeding adenosine or N6-methyladenosine (m6A) during development fully rescued the epileptic behavior. Intriguingly, pan-neuronal expression of an LND-associated mutant form of human HGPRT (I42T), but not the wild-type enzyme, resulted in early locomotor defects and seizure in flies, similar to Aprt deficiency. Overall, our results suggest that Drosophila could be used in different ways to better understand LND and seek a cure for this dramatic disease.

neuroscience↗

MORC2 restriction factor silences HIV proviral expression

The HUSH complex (composed of TASOR, MPP8 and periphilin) represses HIV-1 expression by inducing both propagation of repressive epigenetic marks and degradation of the nascent transcript. Vpx from HIV-2, and Vpr proteins from some simian lentiviruses (SIVs), antagonize HUSH, thereby increasing proviral expression. The chromatin-remodeler MORC2 protein plays a critical role in the epigenetic silencing of host genes by HUSH. Here, we deciphered the role of MORC2 in HIV-1 silencing. We show that MORC2, in contrast to HUSH components, presents strong signatures of positive selection during primate evolution. However, while HUSH is degraded upon HIV-2 infection in a Vpx-dependent manner, MORC2 levels are rather increased, due to the loss of the HUSH-mediated repression. Our results suggest that lentiviral proteins from the Vpr/Vpx family have not driven primate MORC2 evolution. Our findings indicate that MORC2 negatively regulates HIV-1 provirus expression. Mechanistically, we show that MORC2 is recruited to the integrated HIV-1 provirus locus and is required for TASOR-mediated post-transcriptional HIV-1 silencing suggesting that MORC2 sets the stage for the HUSH-mediated HIV-1 nascent RNA degradation. We demonstrate that reducing MORC2 levels diminishes provirus silencing in both monoclonal and polyclonal cellular models of HIV-1 latency. These results suggest that MORC2 has evolved adaptations during primate diversification, possibly in response to challenges posed by DNA pathogens or retroelement integration into the host genome.

microbiology↗

Is cold-induced nuclear import of CBF4 regulating freezing tolerance?

C-repeat binding factors (CBFs) are crucial transcriptional activators in plant responses to low temperature. CBF4 differs by a slower, but more persistent regulation and its role in cold acclimation. Cold acclimation is of accentuated relevance for the tolerance to late spring frosts as they become progressively common as consequence of blurred seasonality in the context of global climate change. In the current study, we explore the functions of CBF4 from grapevine, VvCBF4. Overexpression of VvCBF4 fused to GFP in tobacco BY-2 cells confers cold tolerance. Furthermore, this protein shuttles from the cytoplasm to the nucleus in response to cold stress, associated with accumulation of transcripts for other CBFs and the cold responsive gene ERD10d. This response differs for chilling as compared to freezing and is regulated differently by upstream signalling involving oxidative burst, proteasome activity and jasmonate synthesis. This difference between chilling and freezing is also seen in the regulation of CBF4 transcripts in leaves from different grapevines differing in their cold tolerance. We propose the quality of cold stress is transduced by different upstream signals inducing nuclear import to regulate other CBF factor and activate COR genes.

molecular biology↗