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The unfolded protein response in familial amyotrophic lateral sclerosis.

机译:家族性肌萎缩性侧索硬化症中未反应的蛋白质反应。

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摘要

Mutant superoxide dismutase type 1 (MTSOD1) is thought to cause approximately 20% of cases of familial amyotrophic lateral sclerosis (FALS) because it misfolds and aggregates. Previous studies have shown that MTSOD1 accumulates inside the endoplasmic reticulum (ER) and activates the unfolded protein response (UPR), suggesting that ER stress is involved in the pathogenesis of FALS. We used a genetic approach to investigate the role of the UPR in FALS. We crossed G85RSOD1 transgenic mice with pancreatic ER kinase haploinsufficient (PERK(+/-)) mice to obtain G85R/PERK(+/-) mice. PERK(+/-) mice carry a loss of function mutation of PERK, which is the most rapidly activated UPR pathway, but have no abnormal phenotype. Compared with G85R transgenic mice, G85R/PERK(+/-) mice had a dramatically accelerated disease onset as well as shortened disease duration and lifespan. There was also acceleration of the pathology and earlier MTSOD1 aggregation. A diminished PERK response accelerated disease and pathology in G85R transgenic mice presumably because the mice had a reduced capacity to turn down synthesis of misfolded SOD1, leading to an early overloading of the UPR. The results indicate that the UPR has a significant influence on FALS, and suggest that enhancing the UPR may be effective in treating ALS.
机译:突变型超氧化物歧化酶1(MTSOD1)被认为会导致家族性肌萎缩性侧索硬化症(FALS)的大约20%病例,因为它会折叠并聚集。先前的研究表明MTSOD1积累在内质网(ER)内并激活未折叠的蛋白应答(UPR),表明ER应激与FALS的发病机理有关。我们使用一种遗传方法来调查UPR在FALS中的作用。我们将G85RSOD1转基因小鼠与胰腺ER激酶单倍不足(PERK(+/-))小鼠杂交以获得G85R / PERK(+/-)小鼠。 PERK(+/-)小鼠携带丢失的PERK功能突变,这是激活最快的UPR途径,但没有异常表型。与G85R转基因小鼠相比,G85R / PERK(+/-)小鼠具有显着加速的疾病发作以及缩短的疾病持续时间和寿命。病理学和早期MTSOD1聚集也加速了。减少的PERK反应加速了G85R转基因小鼠的疾病和病理,这可能是因为这些小鼠降低了错误折叠的SOD1合成的能力,从而导致了UPR的早期超载。结果表明,UPR对FALS具有重要影响,并表明增强UPR可能有效治疗ALS。

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