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Systemic dysregulation of TDP-43 binding microRNAs in amyotrophic lateral sclerosis

机译:TDP-43结合性microRNA在肌萎缩性侧索硬化症中的系统失调

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BackgroundA pathological hallmark of most amyotrophic lateral sclerosis (ALS) cases are intracellular aggregates of the protein TDP-43. The pathophysiological relevance of TDP-43 is underlined by familial ALS cases caused by TDP-43 mutations. TDP-43 is involved in processing of both coding RNAs and microRNAs, which are key epigenetic regulators of transcriptome plasticity and suspected to contribute to neurological diseases. We therefore asked whether the TDP-43 binding microRNAs recently identified in cell lines are also dysregulated in ALS patients. We compared their abundance in cerebrospinal fluid (CSF), serum and immortalized lymphoblast cell lines (LCLs) derived from ALS patients and healthy controls. ResultsWe found that expression levels of 5 out of 9 TDP-43 binding microRNAs were altered in the CSF and serum of sporadic ALS cases. The differentially regulated serum microRNAs together with a poor correlation between CSF and serum levels indicate a systemic dysregulation of microRNA abundance independent from the CSF compartment, in line with the ubiquitous expression of TDP-43. The most strongly regulated microRNAs could be confirmed in LCLs from genetically defined ALS patients. While dysregulation of miR-143-5p/3p seems to be a common feature of ALS pathology, downregulation of miR-132-5p/3p and miR-574-5p/3p was evident in sporadic, TARDBP, FUS and C9ORF72, but not SOD1 mutant patients. This parallels the TDP-43 pathology found in most ALS cases, but usually not in patients with SOD1 mutation. ConclusionsWe thus report a systemic and genotype-dependent dysregulation of TDP-43 binding microRNAs in human biomaterial that might reflect an easily accessible biological measure of TDP-43 dysfunction. Furthermore we suggest an independent regulation of TDP-43 binding microRNAs in the serum and CSF compartment as well as a generally low transition of microRNAs across the blood-cerebrospinal fluid barrier.
机译:背景大多数肌萎缩性侧索硬化症(ALS)病例的病理特征是蛋白TDP-43的细胞内聚集体。由TDP-43突变引起的家族性ALS病例强调了TDP-43的病理生理相关性。 TDP-43参与了编码RNA和microRNA的加工,这是转录组可塑性的关键表观遗传调控因子,被怀疑会导致神经系统疾病。因此,我们询问最近在细胞系中鉴定出的与TDP-43结合的microRNA在ALS患者中是否也失调。我们比较了它们在源自ALS患者和健康对照组的脑脊液(CSF),血清和永生化淋巴母细胞系(LCL)中的丰度。结果我们发现散发性ALS病例的CSF和血清中9个TDP-43结合微RNA中有5个的表达水平发生了变化。差异调节的血清microRNA以及CSF与血清水平之间的不良相关性表明,与TDP-43的普遍表达相一致,独立于CSF隔室的microRNA丰度发生系统性失调。在基因定义为ALS的患者的LCL中,可以确认调控最强的microRNA。尽管miR-143-5p / 3p的失调似乎是ALS病理的常见特征,但在散发性,TARDBP,FUS和C9ORF72中,miR-132-5p / 3p和miR-574-5p / 3p的失调很明显,但并非如此SOD1突变患者。这与大多数ALS病例中发现的TDP-43病理学相似,但在SOD1突变患者中通常不存在。结论因此,我们因此报告了人类生物材料中TDP-43结合microRNA的系统性和基因型依赖性失调,这可能反映了TDP-43功能障碍的一种易于获得的生物学方法。此外,我们建议对血清和脑脊液腔室中与TDP-43结合的microRNA进行独立调节,以及穿过血脑脊液屏障的microRNA迁移通常较低。

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