National Brain Research Centre, NH-8, Nainwal Mode, Manesar 122052, Haryana, India.
National Brain Research Centre, NH-8, Nainwal Mode, Manesar 122052, Haryana, India.
Neurobiol Learn Mem. 2021 Nov;185:107522. doi: 10.1016/j.nlm.2021.107522. Epub 2021 Sep 20.
A striking proportion of long non-coding RNAs are expressed specifically in the mammalian brain. Advances in genome-wide sequencing detected widespread diversity in neuronal lncRNAs based on their expression pattern, localization and function. A growing body of literature proposes that localization of lncRNAs is a critical determinant of their function. A rising number of recent findings documented distinct cytoplasmic functions of lncRNAs that are linked to activity-induced control of synaptic plasticity. However, the comprehensive role of cytoplasmic lncRNAs in neuronal functions is less understood. This review surveys our current understanding of lncRNAs that regulate the cytoplasmic life of mRNAs. We discuss the necessity of subcellular localization of lncRNAs in neuronal dendrites and the impact of their compartmentalized positioning on localized translation at the synapse. We have highlighted how lncRNAs modify a functional compartment to meet the demand for input-specific control of synaptic plasticity and memory.
大量长非编码 RNA 特异性表达于哺乳动物的大脑中。基于表达模式、定位和功能,全基因组测序技术的进步检测到神经元长非编码 RNA 的广泛多样性。越来越多的文献提出,长非编码 RNA 的定位是其功能的关键决定因素。最近有大量发现记录了长非编码 RNA 的独特细胞质功能,这些功能与活性诱导的突触可塑性的控制有关。然而,细胞质长非编码 RNA 在神经元功能中的全面作用还不太清楚。这篇综述调查了我们对调节 mRNA 细胞质寿命的长非编码 RNA 的现有认识。我们讨论了长非编码 RNA 在神经元树突中的亚细胞定位的必要性,以及它们分隔定位对突触处局部翻译的影响。我们强调了长非编码 RNA 如何修饰功能区室,以满足输入特异性控制突触可塑性和记忆的需求。