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Amyotrophic lateral sclerosis-associated mutant SOD1 inhibits anterograde axonal transport of mitochondria by reducing Miro1 levels

机译:肌萎缩侧索硬化症相关突变体SOD1通过降低Miro1水平抑制线粒体的顺行轴突运输

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摘要

Defective axonal transport is an early neuropathological feature of amyotrophic lateral sclerosis (ALS). We have previously shown that ALS-associated mutations in Cu/Zn superoxide dismutase 1 (SOD1) impair axonal transport of mitochondria in motor neurons isolated from SOD1 G93A transgenic mice and in ALS mutant SOD1 transfected cortical neurons, but the underlying mechanisms remained unresolved. The outer mitochondrial membrane protein mitochondrial Rho GTPase 1 (Miro1) is a master regulator of mitochondrial axonal transport in response to cytosolic calcium (Ca2+) levels ([Ca2+]c) and mitochondrial damage. Ca2+ binding to Miro1 halts mitochondrial transport by modifying its interaction with kinesin-1 whereas mitochondrial damage induces Phosphatase and Tensin Homolog (PTEN)-induced Putative Kinase 1 (PINK1) and Parkin-dependent degradation of Miro1 and consequently stops transport. To identify the mechanism underlying impaired axonal transport of mitochondria in mutant SOD1-related ALS we investigated [Ca2+]c and Miro1 levels in ALS mutant SOD1 expressing neurons. We found that expression of ALS mutant SOD1 reduced the level of endogenous Miro1 but did not affect [Ca2+]c. ALS mutant SOD1 induced reductions in Miro1 levels were Parkin dependent. Moreover, both overexpression of Miro1 and ablation of PINK1 rescued the mitochondrial axonal transport deficit in ALS mutant SOD1-expressing cortical and motor neurons. Together these results provide evidence that ALS mutant SOD1 inhibits axonal transport of mitochondria by inducing PINK1/Parkin-dependent Miro1 degradation.
机译:轴突运输缺陷是肌萎缩性侧索硬化症(ALS)的早期神经病理学特征。我们以前已经表明,在Cu / Zn超氧化物歧化酶1(SOD1)中与ALS相关的突变会损害从SOD1 G93A转基因小鼠分离的运动神经元中和在ALS突变SOD1转染的皮层神经元中线粒体的轴突运输,但其潜在机制仍未解决。线粒体外膜蛋白线粒体Rho GTPase 1(Miro1)是响应细胞质钙(Ca 2 + )([Ca 2 + ]水平的线粒体轴突运输的主要调节剂] c)和线粒体损害。 Ca 2 + 与Miro1的结合通过修饰其与kinesin-1的相互作用来停止线粒体运输,而线粒体的损​​伤则诱导了磷酸酶和Tensin同系物(PTEN)诱导的假定激酶1(PINK1)和Parkin依赖性的Miro1降解。因此停止运输。为了确定突变型SOD1相关ALS中线粒体轴突运输受损的潜在机制,我们研究了表达ALS突变型SOD1的神经元中[Ca 2 + ] c和Miro1的水平。我们发现,ALS突变体SOD1的表达降低了内源性Miro1的水平,但不影响[Ca 2 + ] c。 ALS突变体SOD1诱导的Miro1水平降低是帕金依赖的。此外,Miro1的过表达和PINK1的消融都挽救了表达ALS突变体SOD1的皮层和运动神经元的线粒体轴突运输缺陷。这些结果共同提供了证据,表明ALS突变体SOD1通过诱导PINK1 / Parkin依赖的Miro1降解而抑制线粒体的轴突运输。

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