Institute of Physiological Chemistry, Philipps-University Marburg, Marburg, Germany.
Faculty for Biology and Preclinical Medicine, Biochemistry I, University of Regensburg, Regensburg, Germany.
Neurobiol Learn Mem. 2019 Mar;159:36-45. doi: 10.1016/j.nlm.2019.02.008. Epub 2019 Feb 18.
microRNA-dependent post-transcriptional control represents an important gene-regulatory layer in post-mitotic neuronal development and synaptic plasticity. We recently identified the brain-enriched miR-138 as a negative regulator of dendritic spine morphogenesis in rat hippocampal neurons. A potential involvement of miR-138 in cognition is further supported by a recent GWAS study on memory performance in a cohort of aged (>60 years) individuals. The expression of miR-138, which is encoded in two independent genomic loci (miR-138-1 and -2), is subject to both cell-type and developmental stage-specific regulation, the underlying molecular mechanisms however are poorly understood. Here, we show that miR-138-2 is the primary source of mature miR-138 in developing rat hippocampal neurons. Furthermore, we obtained evidence for the regulation of miR-138-2 biogenesis at the level of primary miRNA processing. Using biochemical pull-down assays, we identified the nuclear matrix protein Matrin-3 as pri/pre-miR-138 interacting protein and mapped the interaction to the pri/pre-miR-138-2 loop region. Matrin-3 loss-of-function experiments in HEK293 cells and primary neurons together with protein localization studies suggest an inhibitory function of Matrin-3 in nuclear pri-miR-138-2 processing. Together, our experiments unravel a new mechanism of miR-138 regulation in neurons, with important implications for miR-138 regulation during neuronal development, synaptic plasticity and memory-related processes.
miRNA 依赖的转录后调控在有丝后神经元发育和突触可塑性中代表了一个重要的基因调控层。我们最近发现,脑富集的 miR-138 是大鼠海马神经元树突棘形态发生的负调节剂。miR-138 在认知中的潜在作用进一步得到了最近对一组年龄(>60 岁)个体记忆表现进行的全基因组关联研究的支持。miR-138 的表达,由两个独立的基因组位置(miR-138-1 和 -2)编码,受到细胞类型和发育阶段特异性调节的影响,但潜在的分子机制知之甚少。在这里,我们表明 miR-138-2 是发育中的大鼠海马神经元中成熟 miR-138 的主要来源。此外,我们获得了证据表明 miR-138-2 生物发生在初级 miRNA 加工水平受到调节。使用生化下拉测定,我们鉴定了核基质蛋白 Matrin-3 作为 pri/pre-miR-138 相互作用蛋白,并将该相互作用映射到 pri/pre-miR-138-2 环区。HEK293 细胞和原代神经元中的 Matrin-3 功能丧失实验以及蛋白质定位研究表明 Matrin-3 在核 pri-miR-138-2 加工中具有抑制功能。总之,我们的实验揭示了神经元中 miR-138 调节的一种新机制,对神经元发育、突触可塑性和与记忆相关过程中 miR-138 调节具有重要意义。