ReviewBrain : a journal of neurology2025
Emerging roles of transfer RNA fragments in the CNS.
Review in Brain : a journal of neurology, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 10 papers.
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Who cites it
10 citing papers in PubMed.
- A modular class-aware workflow for small RNA sequencing analysis using mouse sperm as a case study.Epigenomics · 2026Article
- The role of microRNAs in executive functions: a comprehensive review and bioinformatics analysis of human and animal studies.Molecular psychiatry · 2026Review
- Excitation-inhibition imbalance underlies perioperative neurocognitive disorders: a single-nucleus transcriptomic perspective in mice hippocampus.Molecular psychiatry · 2026Article
- Inhibition of tRNA fragments dysregulated in human mTLE exacerbates pathology and seizure activity.Acta neuropathologica · 2026Article
- Mitochondria-Associated MicroRNAs: Emerging Roles in the Pathogenesis of Parkinson's Disease.Biomedicines · 2026Review
- tsRNA's Biological Function and its Potential Application in Disease Diagnosis and Prognosis.Journal of Cancer · 2026Review
- Striatal small RNA remodeling in MPTP-induced Parkinson's disease highlights coordinated downregulation of mitochondrial tsRNAs.Frontiers in aging neuroscience · 2026Article
- From Transcriptome to Therapy: The ncRNA Revolution in Neurodevelopmental Disorders.Brain sciences · 2025Review
- Temporal Dynamics of tsRNA Regulation Mark an Abrupt Transition After Epileptogenesis.Journal of neurochemistry · 2025Article
- Altered Short Non-Coding RNA Landscape in the Hippocampus of a Mouse Model of CDKL5 Deficiency Disorder.Biomolecules · 2025Article
Corrections and comments
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Authors and funding
2 authors.
Funding
Abstract
Transfer RNA-derived small RNAs (tsRNAs), previously considered inactive tRNA degradation products, have now been shown to be functional small non-coding RNAs. They may play important roles within the CNS and in brain-body interactions, both during normal developmental stages as well as in diverse brain pathologies. Among the cell types found in the CNS, tsRNAs are particularly abundant in neurons. Correspondingly, neurons show cell type specific tRNA expression profiles when compared to other cells of the CNS under homeostatic conditions and defects in tRNA processing may lead to neurological disorders. Disease-specific tsRNA profiles have been identified in a number of CNS disorders, including amyotrophic lateral sclerosis and epilepsy. Elevated levels of specific tsRNAs have been found in the blood before the onset of epileptic seizures; and age-related, sex-specific loss of mitochondrial genome-originated tsRNAs in the nucleus accumbens of female patients is correlated with accelerated cognitive deterioration in Alzheimer's disease. Disease-related tsRNA signatures have also been identified in the CSF of patients with Parkinson's disease, and nucleated blood cells from ischaemic stroke patients show specific elevation of cholinergic-targeted tsRNAs. The mechanisms of action of tsRNAs are still being elucidated but include targeting complementary mRNA to impact RNA levels and translation in a miRNA-like manner, direct interaction with RNA binding proteins, or interference with translation machinery. The function of tsRNAs may be affected by the chemical modifications they inherit from the originating tRNA molecules, which impact tsRNAs production and may modulate their interactions with proteins. Research on the genetics, biochemical properties and regulatory roles of tsRNAs has expanded rapidly in recent years, facilitated by novel sequencing strategies, which include the removal of tRNA modifications and chemically blocked ends that hinder amplification and adapter ligation. Future in-depth profiling of tsRNAs levels, mode(s) of function, and identification of interacting proteins and RNAs may together shed light on the impact of tsRNAs on neuronal function, and enable novel diagnostics/therapeutics avenues for brain diseases in age, sex and disease-specific manner.
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Registered trials
Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the Socratic graph.