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Biology subjects

Bourgeois, C. F.

Publications and source records attributed to Bourgeois, C. F..

3 recordsLinked to original sources

DDX5 and DDX17 RNA helicases regulate hepatitis B virus RNA splicing

Chronic HBV infection remains a major health burden worldwide and is the main driver of severe liver diseases. Liver pathogenesis is associated with the increased proportion of HBV spliced variants that encode viral proteins involved in liver disease progression. However, how HBV RNA splicing is regulated is poorly understood. Here, we focused on DDX5 and DDX17 RNA helicases, known to regulate HBV RNA metabolism and alternative splicing of host genes. By performing 5RACE-PCR combined with single molecule sequencing, we demonstrated that silencing both proteins increased the usage of a specific splicing donor site and the expression of the derived HBV spliced variants. Polysome fractionation highlighted the ability of these RNA species to encode new viral proteins potentially contributing to liver pathogenesis. Overall, our data established DDX5 and DDX17 helicases as master regulators of HBV RNA metabolism, by fine-tuning viral splicing, which is linked to HBV-induced liver pathogenesis and disease progression.

molecular biology↗

The MYCN oncoprotein and helicases DDX17 and DDX5 have opposite effects on the production of chimeric transcripts in neuroblastoma cells

DEAD box helicases DDX17 and DDX5 control the termination of transcription and the associated cleavage of the 3 end of transcripts. Here we show that the transcriptional readthrough induced by their depletion in neuroblastoma cells also results in increased production of chimeric transcripts from tandemly oriented genes. Analysis of neuroblastoma tumours in which chimeric transcripts are abundant revealed that low expression of the DDX17 and DDX5 genes is associated with poor overall patient survival. Low DDX17 expression is also significantly associated with high-risk tumours and is inversely correlated with MYCN oncogene amplification, suggesting a link between these two factors. We demonstrate that changes in MYCN expression do not affect the expression of either helicase, but alter transcription termination leading to the production of chimeric transcripts. We provide evidence that MYCN acts on termination through its direct binding to the 3 region of genes and that it interacts with DDX17, suggesting that it may inhibit the activity of the helicase. Collectively, our work reveals a novel function of MYCN in transcription termination and suggests that the deregulation of MYCN and DDX17/DDX5 expression in neuroblastoma may lead to the expression of non-canonical and potentially harmful RNA molecules.

molecular biology↗

SplicingLore: a web resource for studying the regulation of cassette exons by human splicing factors

One challenge faced by scientists from the alternative RNA splicing field is to decode the cooperative or antagonistic effects of splicing factors to understand and eventually predict splicing outcomes on a genome-wide scale. In this manuscript, we introduce SplicingLore, an open access database and web resource that help to fill this gap in a straightforward manner. The database contains a collection of RNA-seq-derived lists of alternative exons regulated by a total of 75 different splicing factors. All datasets were processed in a standardized manner, ensuring valid comparisons and correlation analyses. The user can easily retrieve a factor-specific set of differentially included exons from the database, or provide a list of exons and search which splicing factor(s) control(s) their inclusion. Our simple workflow is fast and easy to run, and it ensures a reliable calculation of correlation scores between the tested datasets. As a proof of concept, we predicted and experimentally validated a novel functional cooperation between the RNA helicases DDX17 and DDX5 and the HNRNPC protein. SplicingLore is available at https://splicinglore.ens-lyon.fr/.

genomics↗