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散发性肌萎缩侧索硬化症患者的脑脊液诱导线粒体和溶酶体功能障碍。

Cerebrospinal Fluid from Sporadic Amyotrophic Lateral Sclerosis Patients Induces Mitochondrial and Lysosomal Dysfunction.

作者信息

Sharma Aparna, Varghese Anu Mary, Vijaylakshmi Kalyan, Sumitha Rajendrarao, Prasanna V K, Shruthi S, Chandrasekhar Sagar B K, Datta Keshava K, Gowda Harsha, Nalini Atchayaram, Alladi Phalguni Anand, Christopher Rita, Sathyaprabha Talakad N, Raju Trichur R, Srinivas Bharath M M

机构信息

Department of Neurophysiology, National Institute of Mental Health and Neurosciences (NIMHANS), Hosur Road, Bangalore, 560029, India.

Department of Neuropathology, National Institute of Mental Health and Neurosciences (NIMHANS), Hosur Road, Bangalore, 560029, India.

出版信息

Neurochem Res. 2016 May;41(5):965-84. doi: 10.1007/s11064-015-1779-7. Epub 2015 Dec 8.

Abstract

In our laboratory, we have developed (1) an in vitro model of sporadic Amyotrophic Lateral Sclerosis (sALS) involving exposure of motor neurons to cerebrospinal fluid (CSF) from sALS patients and (2) an in vivo model involving intrathecal injection of sALS-CSF into rat pups. In the current study, we observed that spinal cord extract from the in vivo sALS model displayed elevated reactive oxygen species (ROS) and mitochondrial dysfunction. Quantitative proteomic analysis of sub-cellular fractions from spinal cord of the in vivo sALS model revealed down-regulation of 35 mitochondrial proteins and 4 lysosomal proteins. Many of the down-regulated mitochondrial proteins contribute to alterations in respiratory chain complexes and organellar morphology. Down-regulated lysosomal proteins Hexosaminidase, Sialidase and Aryl sulfatase also displayed lowered enzyme activity, thus validating the mass spectrometry data. Proteomic analysis and validation by western blot indicated that sALS-CSF induced the over-expression of the pro-apoptotic mitochondrial protein BNIP3L. In the in vitro model, sALS-CSF induced neurotoxicity and elevated ROS, while it lowered the mitochondrial membrane potential in rat spinal cord mitochondria in the in vivo model. Ultra structural alterations were evident in mitochondria of cultured motor neurons exposed to ALS-CSF. These observations indicate the first line evidence that sALS-CSF mediated mitochondrial and lysosomal defects collectively contribute to the pathogenesis underlying sALS.

摘要

在我们的实验室中,我们已经建立了(1)一种散发性肌萎缩侧索硬化症(sALS)的体外模型,该模型涉及将运动神经元暴露于sALS患者的脑脊液(CSF)中;以及(2)一种体内模型,该模型涉及向幼鼠鞘内注射sALS-CSF。在当前的研究中,我们观察到体内sALS模型的脊髓提取物显示出活性氧(ROS)升高和线粒体功能障碍。对体内sALS模型脊髓亚细胞组分的定量蛋白质组学分析显示,35种线粒体蛋白和4种溶酶体蛋白表达下调。许多下调的线粒体蛋白导致呼吸链复合物和细胞器形态的改变。下调的溶酶体蛋白己糖胺酶、唾液酸酶和芳基硫酸酯酶的酶活性也降低,从而验证了质谱数据。蛋白质组学分析和蛋白质免疫印迹验证表明,sALS-CSF诱导促凋亡线粒体蛋白BNIP3L的过表达。在体外模型中,sALS-CSF诱导神经毒性并升高ROS,而在体内模型中,它降低了大鼠脊髓线粒体的线粒体膜电位。暴露于ALS-CSF的培养运动神经元的线粒体中出现明显的超微结构改变。这些观察结果表明了一线证据,即sALS-CSF介导的线粒体和溶酶体缺陷共同促成了sALS的发病机制。

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