University of Cincinnati Neuroscience Graduate Program, Cincinnati, Ohio 45229.
Division of Neurology, Cincinnati Children's Hospital Medical Center, Cincinnati, Ohio 45229.
J Neurosci. 2024 Aug 7;44(32):e0365242024. doi: 10.1523/JNEUROSCI.0365-24.2024.
MicroRNAs are emerging as crucial regulators within the complex, dynamic environment of the synapse, and they offer a promising new avenue for the treatment of neurological disease. These small noncoding RNAs modify gene expression in several ways, including posttranscriptional modulation via binding to complementary and semicomplementary sites on target mRNAs. This rapid, finely tuned regulation of gene expression is essential to meet the dynamic demands of the synapse. Here, we provide a detailed review of the multifaceted world of synaptic microRNA regulation. We discuss the many mechanisms by which microRNAs regulate gene expression at the synapse, particularly in the context of neuronal plasticity. We also describe the various factors, such as age, sex, and neurological disease, that can influence microRNA expression and activity in neurons. In summary, microRNAs play a crucial role in the intricate and quickly changing functional requirements of the synapse, and context is essential in the study of microRNAs and their potential therapeutic applications.
微小 RNA 是突触这一复杂动态环境中至关重要的调节因子,它们为治疗神经疾病提供了一个有前途的新途径。这些小分子非编码 RNA 通过与靶 mRNA 上互补和半互补的位点结合,以多种方式调节基因表达。这种快速、精细的基因表达调控对于满足突触的动态需求至关重要。在这里,我们详细回顾了突触微小 RNA 调节的多方面世界。我们讨论了微小 RNA 在突触处调节基因表达的许多机制,特别是在神经元可塑性的背景下。我们还描述了各种因素,如年龄、性别和神经疾病,这些因素可以影响神经元中微小 RNA 的表达和活性。总之,微小 RNA 在突触复杂而快速变化的功能需求中发挥着关键作用,在研究微小 RNA 及其潜在治疗应用时,背景是至关重要的。