The intrinsic cellular heterogeneity and molecular complexity of the mammalian nervous system relies substantially on the dynamic nature and spatiotemporal patterning of gene expression. These features of gene expression are achieved in part through mechanisms involving various epigenetic processes such as DNA methylation, post-translational histone modifications, and non-coding RNA activity, amongst others. In concert, another regulatory layer by which RNA bases and sugar residues are chemically modified enhances neuronal transcriptome complexity. Similar RNA modifications in other systems collectively constitute the cellular epitranscriptome that integrates and impacts various physiological processes. The epitranscriptome is dynamic and i...
International audienceEpigenetics is a mechanism linking environmental factors to altered gene activ...
Covalent RNA modifications were recently rediscovered as abundant RNA chemical tags. Similarly to DN...
A central aspect of nervous system development and function is the post-transcriptional regulation o...
RNA modifications have recently emerged as a widespread and complex facet of gene expression regulat...
RNA modifications have recently emerged as an important regulatory layer of gene expression. The mos...
The study of modified RNA known as epitranscriptomics has become increasingly relevant in our unders...
Sequence databases and transcriptome-wide mapping have revealed different reversible and dynamic che...
Although a plethora of DNA modifications have been extensively investigated in the last decade, rece...
RNA editing contributes to transcriptome diversification through RNA modifications in relation to ge...
The progressive maturation and functional plasticity of the nervous system in health and disease inv...
Our understanding of the post-transcriptional modifications that decorate mRNAs, a regulatory layer ...
The first chemical modification to RNA was discovered nearly 60 years ago; to date, more than 100 ch...
Epigenetic modifications of DNA and chromatin are long known to control stem cell differentiation an...
Modified RNA molecules have recently been shown to regulate nervous system functions. This mini-revi...
Abstract RNA contains over 150 types of chemical modifications. Although many of these chemical modi...
International audienceEpigenetics is a mechanism linking environmental factors to altered gene activ...
Covalent RNA modifications were recently rediscovered as abundant RNA chemical tags. Similarly to DN...
A central aspect of nervous system development and function is the post-transcriptional regulation o...
RNA modifications have recently emerged as a widespread and complex facet of gene expression regulat...
RNA modifications have recently emerged as an important regulatory layer of gene expression. The mos...
The study of modified RNA known as epitranscriptomics has become increasingly relevant in our unders...
Sequence databases and transcriptome-wide mapping have revealed different reversible and dynamic che...
Although a plethora of DNA modifications have been extensively investigated in the last decade, rece...
RNA editing contributes to transcriptome diversification through RNA modifications in relation to ge...
The progressive maturation and functional plasticity of the nervous system in health and disease inv...
Our understanding of the post-transcriptional modifications that decorate mRNAs, a regulatory layer ...
The first chemical modification to RNA was discovered nearly 60 years ago; to date, more than 100 ch...
Epigenetic modifications of DNA and chromatin are long known to control stem cell differentiation an...
Modified RNA molecules have recently been shown to regulate nervous system functions. This mini-revi...
Abstract RNA contains over 150 types of chemical modifications. Although many of these chemical modi...
International audienceEpigenetics is a mechanism linking environmental factors to altered gene activ...
Covalent RNA modifications were recently rediscovered as abundant RNA chemical tags. Similarly to DN...
A central aspect of nervous system development and function is the post-transcriptional regulation o...