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The structural integrity of TDP-43 N-terminus is required for efficient aggregate entrapment and consequent loss of protein function

机译:TDP-43 N末端的结构完整性是有效聚集聚集体和随之而来的蛋白质功能丧失所必需的

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摘要

>ABSTRACT. Nuclear factor TDP-43 has been shown to play a key role in Amyotrophic Lateral Sclerosis and Frontotemporal Dementia, where TDP-43 aggregates accumulate in patient's affected neurons and this event can cause neuronal dysfunction. A major focus of today's research is to discover the critical factors that lead to TDP-43 aggregation and the consequences for neuronal metabolism. From a structural point of view, several lines of evidence point toward TDP-43 C-terminus as a key domain able to mediate this process. Regarding this region, we have recently described a novel cellular TDP-43 aggregation model based on 12 tandem repetitions of its 339-366 Q/N rich prion-like domain. In addition, we have shown and confirmed that a minimal TDP-43 construct constituted by the N and C-terminal regions, but lacking both RRM domains, induce aggregation of endogenous TDP-43 and leads to its total loss of function as seen by changes in the alternative splicing of endogenous genes. In this work, we further characterize this model and show the importance of the N-terminus structure in the loss of function process. In addition, from a biochemical point of view we report that, as shown in a previous version of this model (GFP 12×Q/N), the endogenous TDP-43 trapped in the aggregates undergoes the 2 most important post-translational modifications seen in pathological TDP-43 inclusions: ubiquitination and hyperphosphorylation.
机译:>摘要核因子TDP-43已被证明在肌萎缩性侧索硬化症和额颞痴呆中起关键作用,其中TDP-43聚集在患者受影响的神经元中,此事件可导致神经元功能障碍。当今研究的主要重点是发现导致TDP-43聚集的关键因素及其对神经元代谢的影响。从结构的角度来看,有几条证据表明TDP-43 C端是能够介导这一过程的关键域。关于该区域,我们最近基于其339-366 Q / N富病毒样结构域的12个串联重复描述了一种新型细胞TDP-43聚集模型。此外,我们已经显示并证实,由N和C端区域组成但缺少两个RRM结构域的最小TDP-43构建体会诱导内源性TDP-43聚集,并导致其总功能丧失(如变化所示)内源基因的选择性剪接。在这项工作中,我们进一步表征了该模型并显示了N末端结构在功能丧失过程中的重要性。此外,从生化的角度来看,我们报告,如该模型的先前版本(GFP 12×Q / N)所示,捕获在聚集体中的内源性TDP-43经历了2个最重要的翻译后修饰在病理性TDP-43夹杂物中的作用:泛素化和过度磷酸化。

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