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Overexpression of ter94 Drosophila VCP improves motor neuron degeneration induced by knockdown of TBPH Drosophila TDP-43

机译:ter94的果蝇VCP的过表达改善了TBPH果蝇TDP-43的敲低诱导的运动神经元变性

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摘要

Amyotrophic lateral sclerosis (ALS) is a rapidly progressive neurodegenerative disease characterized by the motor neuron degeneration that eventually leads to complete paralysis and death within 2-5 years after disease onset. One of the major pathological hallmark of ALS is abnormal accumulation of inclusions containing TAR DNA-binding protein-43 (TDP-43). TDP-43 is normally found in the nucleus, but in ALS, it localizes in the cytoplasm as inclusions as well as in the nucleus. Loss of nuclear TDP-43 functions likely contributes to neurodegeneration. TBPH is the Drosophila ortholog of human TDP-43. In the present study, we confirmed that Drosophila models harboring TBPH knockdown develop locomotive deficits and degeneration of motoneurons (MNs) due to loss of its nuclear functions, recapitulating the human ALS phenotypes. We previously suggested that ter94, the Drosophila ortholog of human Valosin-containing protein (VCP), is a modulator of degeneration in MNs induced by knockdown of Caz, the Drosophila ortholog of human FUS. In this study, to determine the effects of VCP on TDP-43-assosiated ALS pathogenic processes, we examined genetic interactions between TBPH and ter94. Overexpression of ter94 suppressed the compound eye degeneration caused by TBPH knockdown and suppressed the morbid phenotypes caused by neuron-specific TBPH knockdown, such as locomotive dysfunction and degeneration of MN terminals. Further immunocytochemical analyses revealed that the suppression is caused by restoring the cytoplasmically mislocalized TBPH back to the nucleus. In consistent with these observations, a loss-of-function mutation of ter94 enhanced the compound eye degeneration caused by TBPH knockdown, and partially enhanced the locomotive dysfunction caused by TBPH knockdown. Our data demonstrated that expression levels of ter94 influenced the phenotypes caused by TBPH knockdown, and indicate that reagents that up-regulate the function of human VCP could modify MN degeneration in ALS caused by TDP-43 mislocalization.
机译:肌萎缩性侧索硬化症(ALS)是一种快速进行性神经退行性疾病,其特征在于运动神经元变性,最终导致发病后2-5年内完全瘫痪并死亡。 ALS的主要病理标志之一是含有TAR DNA结合蛋白43(TDP-43)的内含物的异常积累。 TDP-43通常存在于细胞核中,但在ALS中,它既作为包裹体也位于细胞核中,位于细胞质中。 TDP-43核功能的丧失可能导致神经变性。 TBPH是人TDP-43的果蝇直系同源物。在本研究中,我们证实了具有TBPH抑制功能的果蝇模型由于其核功能丧失而发展了机车缺陷和运动神经元(MNs)的退化,概括了人类ALS表型。我们以前曾提出,ter94,人Valosin含蛋白质(VCP)的果蝇直向同源物,是由人类FUS的果蝇直向同源物Caz敲低诱导的MNs变性的调节剂。在这项研究中,为了确定VCP对TDP-43相关的ALS致病过程的影响,我们研究了TBPH和ter94之间的遗传相互作用。 ter94的过表达抑制了TBPH敲低引起的复眼变性,并抑制了神经元特异性 TBPH 敲低引起的病态表型,例如机车功能障碍和MN末端变性。进一步的免疫细胞化学分析表明,抑制作用是由于将胞质错位的TBPH恢复到细胞核而引起的。与这些观察结果一致, ter94 的功能丧失突变增强了 TBPH 敲低引起的复合眼退化,并部分增强了引起的机车功能障碍。 TBPH 组合式。我们的数据表明 ter94 的表达水平影响 TBPH 敲低引起的表型,并表明上调人VCP功能的试剂可以改变ALS引起的MN变性由TDP-43错误定位。

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