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Expression of Human Endogenous Retrovirus-K in Spinal and Bulbar Muscular Atrophy

机译:人内源性逆转录病毒-K在脊髓和大肌肌肉萎缩症中的表达

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摘要

>Background: Spinal and Bulbar Muscular Atrophy (SBMA) is caused by the extension of the polyglutamine tract within the androgen receptor (AR) gene, and results in a multisystem presentation, including the degeneration of lower motor neurons. The androgen receptor (AR) is known to modulate the expression of endogenous retrovirus-K (ERVK), a pathogenic viral genomic symbiont. Since ERVK is associated with motor neuron disease, such as Amyotrophic Lateral Sclerosis (ALS), we sought to determine if patients with SBMA exhibit evidence of ERVK reactivation.>Results: Data from a pilot study demonstrate that peripheral blood mononuclear cell (PBMC) samples from controls and patients with SBMA were examined ex vivo for the expression of ERVK viral transcripts and proteins. No differences in ERVK RNA expression was observed between the clinical groups. In contrast, enhancement of processed ERVK Gag and integrase proteins were observed in SBMA-derived PBMC as compared to healthy control specimens. Increased ERVK protein maturation co-occurred with elevation in the expression of the pro-inflammatory transcription factor IRF1 in SBMA.>Conclusions: Our findings indicate that ERVK viral protein maturation in SBMA is an unrecognized biomarker and facet of the disease. We discuss how our current understanding of ERVK-driven pathology may tie into key aspects of multi-system dysfunction in SBMA, with a focus on inflammation, proteinopathy, as well as DNA damage and repair.
机译:>背景:脊髓和球茎肌萎缩症(SBMA)是由雄激素受体(AR)基因内的聚谷氨酰胺束的延伸引起的,并导致多系统表现,包括下运动神经元的变性。已知雄激素受体(AR)可以调节内源性逆转录病毒K(ERVK)的表达,ERK是一种致病性病毒基因组共生体。由于ERVK与肌萎缩性侧索硬化症(ALS)等运动神经元疾病有关,因此我们试图确定SBMA患者是否表现出ERVK激活的证据。>结果:一项先导研究的数据表明外周血对照和SBMA患者的单核细胞(PBMC)样品离体检查了ERVK病毒转录本和蛋白质的表达。在临床组之间未观察到ERVK RNA表达的差异。相反,与健康对照标本相比,在SBMA衍生的PBMC中观察到加工后的ERVK Gag和整合酶蛋白的增强。 ERVK蛋白成熟增加与SBMA中促炎转录因子IRF1的表达升高同时发生。>结论:我们的发现表明,SBMA中ERVK病毒蛋白成熟是无法识别的生物标志物和方面疾病。我们将讨论我们目前对ERVK驱动的病理学的理解如何与SBMA中多系统功能障碍的关键方面联系起来,重点是炎症,蛋白病以及DNA损伤和修复。

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