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Pathogenic role of BECN1/Beclin 1 in the development of amyotrophic lateral sclerosis

机译:BECN1 / Beclin 1在肌萎缩性侧索硬化发展中的致病作用

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摘要

Pharmacological activation of autophagy is becoming an attractive strategy to induce the selective degradation of aggregate-prone proteins. Recent evidence also suggests that autophagy impairment may underlie the pathogenesis of several neurodegenerative diseases. Mutations in the gene encoding SOD1 (superoxide disumutase 1) trigger familial amyotrophic lateral sclerosis (ALS), inducing its misfolding and aggregation and the progressive loss of motoneurons. It is still under debate whether autophagy has a protective or detrimental role in ALS. Here we evaluate the impact of BECN1/Beclin 1, an essential autophagy regulator, in ALS. BECN1 levels were upregulated in both cells and animals expressing mutant SOD1. To evaluate the impact of BECN1 to the pathogenesis of ALS in vivo, we generated mutant SOD1 transgenic mice heterozygous for Becn1. We observed an unexpected increase in life span of mutant SOD1 transgenic mice haploinsufficient for Becn1 compared with littermate control animals. These effects were accompanied by enhanced accumulation of SQSTM1/p62 and reduced levels of LC3-II, and an altered equilibrium between monomeric and oligomeric mutant SOD1 species in the spinal cord. At the molecular level, we detected an abnormal interaction of mutant SOD1 with the BECN1-BCL2L1 complex that may impact autophagy stimulation. Our data support a dual role of BECN1 in ALS and depict a complex scenario in terms of predicting the effects of manipulating autophagy in a disease context.
机译:自噬的药理活化已成为诱使易聚集蛋白选择性降解的诱人策略。最近的证据还表明自噬功能障碍可能是几种神经退行性疾病的发病机理的基础。编码SOD1(超氧化物歧化酶1)的基因中的突变会触发家族性肌萎缩性侧索硬化症(ALS),从而导致其错误折叠和聚集以及运动神经元的逐步丧失。自噬在ALS中起保护作用还是有害作用仍在争论中。在这里,我们评估了BECN1 / Beclin 1(一种必需的自噬调节剂)对ALS的影响。在表达突变型SOD1的细胞和动物中,BECN1的水平均上调。为了评估BECN1对体内ALS发病机制的影响,我们生成了Becn1杂合的突变SOD1转基因小鼠。我们观察到与同窝对照动物相比,单倍于Becn1的单倍体不足的突变SOD1转基因小鼠的寿命意外增加。这些影响伴随着SQSTM1 / p62积累的增加和LC3-II水平的降低,以及脊髓中单体和寡聚突变体SOD1种类之间平衡的改变。在分子水平上,我们检测到突变型SOD1与BECN1-BCL2L1复合体的异常相互作用,这可能会影响自噬刺激。我们的数据支持BECN1在ALS中的双重作用,并且在预测疾病背景下自噬的影响方面描述了一个复杂的情况。

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