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高血糖会改变脑缺血再灌注小鼠的线粒体裂变和融合蛋白。

Hyperglycemia alters mitochondrial fission and fusion proteins in mice subjected to cerebral ischemia and reperfusion.

机构信息

Department of Pharmaceutical Sciences, Biomanufacturing, Research Institute and Technology Enterprise (BRITE), North Carolina Central University, BRITE Building 2025, 302 East Lawson Street, Durham, NC 27707, USA.

出版信息

Transl Stroke Res. 2012 Jun;3(2):296-304. doi: 10.1007/s12975-012-0158-9.

Abstract

Preischemic hyperglycemia exacerbates brain damage caused by cerebral ischemia. In the present experiment, we studied the effects of preischemic hyperglycemia on protein markers that are related to mitochondrial fission and fusion, mitochondrial biogenesis, and autophagy in mice subjected to 30-min transient focal ischemia. The fission proteins dynamin-related protein 1 (Drp1) and fission 1 (Fis1), fusion proteins optic atrophy 1 (Opa1) and mitofusin 2 (Mfn2), mitochondrial biogenesis regulators nuclear respiratory factor 1 (NRF1) and peroxisome proliferator-activated receptor gamma coactivator 1-alpha (PGC-1α), and autophagy marker beclin 1 and microtubule-associated protein light chain 3 (LC3) were analyzed in control, 30 min middle cerebral artery occlusion (MCAO) plus 6-, 24-, and 72 h of reperfusion in normo- and hyperglycemic conditions. Cerebral ischemia increased the levels of Drp1 and decreased Fis1 after reperfusion. Preischemic hyperglycemia further augmented the increase of Drp1 and induced elevation in Fis1. Ischemia inhibited the levels of Opa1 and Mfn2 and hyperglycemia further decreased the level of Opa1. Further, NRF1 increased after reperfusion in both normo- and hyperglycemic animals. However, such increase was caused by reperfusion rather than glucose level. Finally, ischemia increased beclin 1 level at 6 and 24 h of reperfusion and hyperglycemia further increased the beclin 1 level and caused LC3-II increase as well. Hyperglycemia enhances the ischemia-induced mitochondrial dynamic imbalance towards fission that may favor mitochondrial fragmentation and subsequent damage. Hyperglycemia elevated autophagy markers may represent an adapting reaction to the severe damage incurred in hyperglycemic animals or a third pathway of cell death.

摘要

缺血前高血糖会加重脑缺血引起的脑损伤。在本实验中,我们研究了缺血前高血糖对 30 分钟短暂性局灶性脑缺血小鼠与线粒体分裂和融合、线粒体生物发生和自噬相关的蛋白质标志物的影响。分裂蛋白动力相关蛋白 1(Drp1)和分裂 1(Fis1)、融合蛋白视神经萎缩 1(Opa1)和线粒体融合蛋白 2(Mfn2)、线粒体生物发生调节剂核呼吸因子 1(NRF1)和过氧化物酶体增殖物激活受体 γ共激活因子 1-α(PGC-1α)以及自噬标志物 beclin 1 和微管相关蛋白轻链 3(LC3)在正常血糖和高血糖条件下的对照组、30 分钟大脑中动脉闭塞(MCAO)加再灌注 6、24 和 72 小时进行了分析。脑缺血后再灌注增加了 Drp1 的水平,降低了 Fis1 的水平。缺血前高血糖进一步增加了 Drp1 的增加,并诱导了 Fis1 的升高。缺血抑制了 Opa1 和 Mfn2 的水平,高血糖进一步降低了 Opa1 的水平。此外,在正常血糖和高血糖动物中,再灌注后 NRF1 增加。然而,这种增加是由再灌注引起的,而不是葡萄糖水平。最后,缺血在再灌注 6 和 24 小时时增加了 beclin 1 的水平,高血糖进一步增加了 beclin 1 的水平,并导致 LC3-II 的增加。高血糖增强了缺血诱导的向分裂的线粒体动力学失衡,这可能有利于线粒体碎片化和随后的损伤。高血糖升高的自噬标志物可能代表对高血糖动物严重损伤的适应反应,或者是细胞死亡的第三种途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4805/3636536/a3f33add7df6/nihms437257f1.jpg

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