Modified RNA molecules have recently been shown to regulate nervous system functions. This mini-review and associated mini-symposium provide an overview of the types and known functions of novel modified RNAs in the nervous system, including covalently modified RNAs, edited RNAs, and circular RNAs. We discuss basic molecular mechanisms involving RNA modifications as well as the impact of modified RNAs and their regulation on neuronal processes and disorders, including neural fate specification, intellectual disability, neurodegeneration, dopamine neuron function, and substance use disorders
The importance of various classes of regulatory non-protein-coding RNA molecules (ncRNAs) in the nor...
The brain is of bewildering complexity and numerous genes and signaling molecules have been describe...
The discovery of non-coding RNAs (ncRNAs)has been one of the central findings from early genomic seq...
The intrinsic cellular heterogeneity and molecular complexity of the mammalian nervous system relies...
Until about a decade ago, the non-coding part of the genome was considered without function. RNA seq...
Until about a decade ago, the non-coding part of the genome was considered without function. RNA seq...
Advancements in RNA sequencing technologies in recent years have contributed greatly to our understa...
The study of modified RNA known as epitranscriptomics has become increasingly relevant in our unders...
The progressive maturation and functional plasticity of the nervous system in health and disease inv...
Non-coding RNAs (ncRNAs), and in particular microRNAs are rapidly becoming the focus of research int...
Abstract An expanding assortment of small, noncoding RNAs identified in the nervous system suggests ...
Increasing evidence suggests that the development and function of the nervous system is heavily depe...
Synaptic plasticity is the activity dependent alteration of the composition, form and strength of sy...
Cells use chemical modifications to alter the sterics, charge, and conformations of large biomolecul...
RNAs adopt diverse folded structures that are essential for function and thus play critical roles in...
The importance of various classes of regulatory non-protein-coding RNA molecules (ncRNAs) in the nor...
The brain is of bewildering complexity and numerous genes and signaling molecules have been describe...
The discovery of non-coding RNAs (ncRNAs)has been one of the central findings from early genomic seq...
The intrinsic cellular heterogeneity and molecular complexity of the mammalian nervous system relies...
Until about a decade ago, the non-coding part of the genome was considered without function. RNA seq...
Until about a decade ago, the non-coding part of the genome was considered without function. RNA seq...
Advancements in RNA sequencing technologies in recent years have contributed greatly to our understa...
The study of modified RNA known as epitranscriptomics has become increasingly relevant in our unders...
The progressive maturation and functional plasticity of the nervous system in health and disease inv...
Non-coding RNAs (ncRNAs), and in particular microRNAs are rapidly becoming the focus of research int...
Abstract An expanding assortment of small, noncoding RNAs identified in the nervous system suggests ...
Increasing evidence suggests that the development and function of the nervous system is heavily depe...
Synaptic plasticity is the activity dependent alteration of the composition, form and strength of sy...
Cells use chemical modifications to alter the sterics, charge, and conformations of large biomolecul...
RNAs adopt diverse folded structures that are essential for function and thus play critical roles in...
The importance of various classes of regulatory non-protein-coding RNA molecules (ncRNAs) in the nor...
The brain is of bewildering complexity and numerous genes and signaling molecules have been describe...
The discovery of non-coding RNAs (ncRNAs)has been one of the central findings from early genomic seq...