Crippa Valeria, Cicardi Maria Elena, Ramesh Nandini, Seguin Samuel J, Ganassi Massimo, Bigi Ilaria, Diacci Chiara, Zelotti Elena, Baratashvili Madina, Gregory Jenna M, Dobson Christopher M, Cereda Cristina, Pandey Udai Bhan, Poletti Angelo, Carra Serena
Genomic and post-Genomic Center, C. Mondino National Institute of Neurology Foundation, 27100 Pavia, Italy.
Dipartimento di Scienze Farmacologiche e Biomolecolari (DiSFeB), Centro di Eccellenza sulle Malattie Neurodegenerative, Università degli Studi di Milano, 20133 Milano, Italy.
Hum Mol Genet. 2016 Sep 15;25(18):3908-3924. doi: 10.1093/hmg/ddw232. Epub 2016 Jul 27.
Aggregation of TAR-DNA-binding protein 43 (TDP-43) and of its fragments TDP-25 and TDP-35 occurs in amyotrophic lateral sclerosis (ALS). TDP-25 and TDP-35 act as seeds for TDP-43 aggregation, altering its function and exerting toxicity. Thus, inhibition of TDP-25 and TDP-35 aggregation and promotion of their degradation may protect against cellular damage. Upregulation of HSPB8 is one possible approach for this purpose, since this chaperone promotes the clearance of an ALS associated fragments of TDP-43 and is upregulated in the surviving motor neurones of transgenic ALS mice and human patients. We report that overexpression of HSPB8 in immortalized motor neurones decreased the accumulation of TDP-25 and TDP-35 and that protection against mislocalized/truncated TDP-43 was observed for HSPB8 in Drosophila melanogaster Overexpression of HSP67Bc, the functional ortholog of human HSPB8, suppressed the eye degeneration caused by the cytoplasmic accumulation of a TDP-43 variant with a mutation in the nuclear localization signal (TDP-43-NLS). TDP-43-NLS accumulation in retinal cells was counteracted by HSP67Bc overexpression. According with this finding, downregulation of HSP67Bc increased eye degeneration, an effect that is consistent with the accumulation of high molecular weight TDP-43 species and ubiquitinated proteins. Moreover, we report a novel Drosophila model expressing TDP-35, and show that while TDP-43 and TDP-25 expression in the fly eyes causes a mild degeneration, TDP-35 expression leads to severe neurodegeneration as revealed by pupae lethality; the latter effect could be rescued by HSP67Bc overexpression. Collectively, our data demonstrate that HSPB8 upregulation mitigates TDP-43 fragment mediated toxicity, in mammalian neuronal cells and flies.
TAR-DNA结合蛋白43(TDP-43)及其片段TDP-25和TDP-35的聚集发生在肌萎缩侧索硬化症(ALS)中。TDP-25和TDP-35充当TDP-43聚集的种子,改变其功能并发挥毒性作用。因此,抑制TDP-25和TDP-35的聚集并促进其降解可能预防细胞损伤。热休克蛋白B8(HSPB8)的上调是实现这一目的的一种可能方法,因为这种伴侣蛋白可促进TDP-43的一种ALS相关片段的清除,并且在转基因ALS小鼠和人类患者存活的运动神经元中上调。我们报告称,在永生化运动神经元中过表达HSPB8可减少TDP-25和TDP-35的积累,并且在果蝇中观察到HSPB8可保护细胞免受错误定位/截短的TDP-43的影响。人类HSPB8的功能同源物HSP67Bc的过表达抑制了由核定位信号发生突变的TDP-43变体(TDP-43-NLS)的细胞质积累所导致的眼睛退化。视网膜细胞中TDP-43-NLS的积累可通过HSP67Bc的过表达来抵消。与此发现一致,HSP67Bc的下调会加剧眼睛退化,这一效应与高分子量TDP-43物种和泛素化蛋白的积累相一致。此外,我们报告了一种表达TDP-35的新型果蝇模型,并表明虽然果蝇眼睛中TDP-43和TDP-25的表达会导致轻度退化,但TDP-35的表达会导致严重的神经退行性变,如蛹致死率所示;后者的效应可通过HSP67Bc的过表达来挽救。总体而言,我们的数据表明,在哺乳动物神经元细胞和果蝇中,HSPB8的上调可减轻TDP-43片段介导的毒性。