4.7 Article

Mechanisms of Neuronal Alternative Splicing and Strategies for Therapeutic Interventions

期刊

JOURNAL OF NEUROSCIENCE
卷 39, 期 42, 页码 8193-8199

出版社

SOC NEUROSCIENCE
DOI: 10.1523/JNEUROSCI.1149-19.2019

关键词

alternative splicing; CACNA1B; spinal muscular atrophy (SMA); autism spectrum disorder (ASD); axonogenesis; chromatin

资金

  1. Warren Alpert Fellowship Award
  2. Canadian Institutes of Health Research (CIHR)
  3. European Molecular Biology Organization Postdoctoral Fellowship
  4. Ontario Institute for Regenerative Medicine (OIRM)
  5. Charles E. Kaufman Foundation Young Investigator Award
  6. Whitehall Foundation
  7. National Institutes of Health National Institute on Drug Abuse Avenir Director's Pioneer Award
  8. National Institutes of Health [R01MH116220, R01NS104041, NS055925, R21NS101312]
  9. SFARI Bridge to Independence Award

向作者/读者索取更多资源

Many cellular and physiological processes are coordinated by regulatory networks that produce a remarkable complexity of transcript isoforms. In the mammalian nervous system, alternative pre-mRNA splicing generates functionally distinct isoforms that play key roles in normal physiology, supporting development, plasticity, complex behaviors, and cognition. Neuronal splicing programs controlled by RNA-binding proteins, are influenced by chromatin modifications and can exhibit neuronal subtype specificity. As highlighted in recent publications, aberrant alternative splicing is a major contributor to disease phenotypes. Therefore, understanding the underlying mechanisms of alternative splicing regulation and identifying functional splicing isoforms with critical phenotypic roles are expected to provide a comprehensive resource for therapeutic development, as illuminated by recent successful interventions of spinal muscular atrophy. Here, we discuss the latest progress in the study of the emerging complexity of alternative splicing mechanisms in neurons, and how these findings inform new therapies to correct and control splicing defects.

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