Department of Pharmacology and Toxicology, Indiana University School of Medicine, Indianapolis, IN, United States.
Department of Pharmacology and Toxicology, Indiana University School of Medicine, Indianapolis, IN, United States; Stark Neuroscience Research Institute, Indiana University School of Medicine, Indianapolis, IN, United States.
Neurochem Int. 2017 Oct;109:24-33. doi: 10.1016/j.neuint.2017.01.001. Epub 2017 Jan 3.
The mechanisms implicated in the pathology of Huntington's disease (HD) remain not completely understood, although dysfunction of mitochondrial oxidative metabolism and Ca handling have been suggested as contributing factors. However, in our previous studies with mitochondria isolated from the whole brains of HD mice, we found no evidence for defects in mitochondrial respiration and Ca handling. In the present study, we used the YAC128 mouse model of HD to evaluate the effect of mHtt on respiratory activity and Ca uptake capacity of mitochondria isolated from the striatum, the most vulnerable brain region in HD. Isolated, Percoll-gradient purified striatal mitochondria from YAC128 mice were free of cytosolic and ER contaminations, but retained attached mHtt. Both nonsynaptic and synaptic striatal mitochondria isolated from early symptomatic 2-month-old YAC128 mice had similar respiratory rates and Ca uptake capacities compared with mitochondria from wild-type FVB/NJ mice. Consistent with the lack of difference in mitochondrial respiration, we found that the expression of several nuclear-encoded proteins in striatal mitochondria was similar between wild-type and YAC128 mice. Taken together, our data demonstrate that mHtt does not alter respiration and Ca uptake capacity in striatal mitochondria isolated from YAC128 mice, suggesting that respiratory defect and Ca uptake deficiency most likely do not contribute to striatal pathology associated with HD.
亨廷顿病(HD)发病机制的相关机制仍不完全清楚,尽管已经提出线粒体氧化代谢和钙处理功能障碍是促成因素。然而,在我们之前使用 HD 小鼠全脑分离的线粒体进行的研究中,我们没有发现线粒体呼吸和钙处理缺陷的证据。在本研究中,我们使用 YAC128 小鼠模型来评估 mHtt 对从纹状体分离的线粒体呼吸活性和 Ca 摄取能力的影响,纹状体是 HD 中最易受影响的脑区。从 YAC128 小鼠分离的、经 Percoll 梯度纯化的纹状体线粒体没有细胞质和 ER 污染,但保留了附着的 mHtt。与来自野生型 FVB/NJ 小鼠的线粒体相比,来自早期有症状的 2 个月大的 YAC128 小鼠的非突触和突触纹状体线粒体具有相似的呼吸率和 Ca 摄取能力。与线粒体呼吸没有差异一致,我们发现纹状体线粒体中几种核编码蛋白的表达在野生型和 YAC128 小鼠之间相似。总之,我们的数据表明,mHtt 不会改变从 YAC128 小鼠分离的纹状体线粒体的呼吸和 Ca 摄取能力,这表明呼吸缺陷和 Ca 摄取不足不太可能导致与 HD 相关的纹状体病理学。