Department of Biology and Biotechnologies "Charles Darwin", Sapienza University of Rome, 00185 Rome, Italy.
Center for Life Nano- & Neuro-Science, Fondazione Istituto Italiano di Tecnologia (IIT), 00161 Rome, Italy.
Int J Mol Sci. 2023 Feb 6;24(4):3181. doi: 10.3390/ijms24043181.
Deregulation of RNA metabolism has emerged as one of the key events leading to the degeneration of motor neurons (MNs) in Amyotrophic Lateral Sclerosis (ALS) disease. Indeed, mutations on RNA-binding proteins (RBPs) or on proteins involved in aspects of RNA metabolism account for the majority of familiar forms of ALS. In particular, the impact of the ALS-linked mutations of the RBP FUS on many aspects of RNA-related processes has been vastly investigated. FUS plays a pivotal role in splicing regulation and its mutations severely alter the exon composition of transcripts coding for proteins involved in neurogenesis, axon guidance, and synaptic activity. In this study, by using in vitro-derived human MNs, we investigate the effect of the P525L FUS mutation on non-canonical splicing events that leads to the formation of circular RNAs (circRNAs). We observed altered levels of circRNAs in FUS MNs and a preferential binding of the mutant protein to introns flanking downregulated circRNAs and containing inverted Alu repeats. For a subset of circRNAs, FUS also impacts their nuclear/cytoplasmic partitioning, confirming its involvement in different processes of RNA metabolism. Finally, we assess the potential of cytoplasmic circRNAs to act as miRNA sponges, with possible implications in ALS pathogenesis.
RNA 代谢失调已成为导致肌萎缩侧索硬化症 (ALS) 运动神经元 (MNs) 退化的关键事件之一。事实上,RNA 结合蛋白 (RBPs) 或参与 RNA 代谢各个方面的蛋白的突变占大多数常见形式的 ALS。特别是,ALS 相关 RBP FUS 的突变对许多与 RNA 相关过程的影响进行了广泛的研究。FUS 在剪接调控中发挥着关键作用,其突变严重改变了编码神经发生、轴突导向和突触活性相关蛋白的转录物的外显子组成。在这项研究中,我们使用体外衍生的人类 MNs,研究了 P525L FUS 突变对导致形成环状 RNA (circRNAs) 的非典型剪接事件的影响。我们观察到 FUS MNs 中的 circRNAs 水平发生改变,并且突变蛋白优先与下调的 circRNAs 侧翼的内含子结合,这些内含子含有反向 Alu 重复序列。对于circRNAs 的一部分,FUS 还影响它们的核/细胞质分配,证实其参与了不同的 RNA 代谢过程。最后,我们评估了细胞质 circRNAs 作为 miRNA 海绵的潜力,这可能对 ALS 的发病机制有影响。