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载脂蛋白 E 在电负性低密脂蛋白诱导的心肌细胞线粒体功能障碍中的作用。

Role of apolipoprotein E in electronegative low-density lipoprotein-induced mitochondrial dysfunction in cardiomyocytes.

机构信息

Graduate Institute of Basic Medical Science, China Medical University, Taichung 40402, Taiwan; Department of Medicine, Mackay Medical College, New Taipei City 25245, Taiwan; Cardiovascular Research Laboratory, China Medical University Hospital, Taichung 40447, Taiwan.

Department of Medicine, Mackay Medical College, New Taipei City 25245, Taiwan; Cardiovascular Research Laboratory, China Medical University Hospital, Taichung 40447, Taiwan; Department of Chinese Pharmaceutical Sciences and Chinese Medicine Resources, China Medical University, Taichung 40402, Taiwan.

出版信息

Metabolism. 2020 Jun;107:154227. doi: 10.1016/j.metabol.2020.154227. Epub 2020 Apr 8.

Abstract

OBJECTIVE

L5, a highly electronegative subtype of low-density lipoprotein (LDL), is likely associated with the development of atherosclerosis and cardiovascular diseases. Normal LDL is composed mainly of apolipoprotein (Apo) B, but L5 has additional proteins such as ApoE. We previously demonstrated that L5 induces endothelial cell senescence by increasing mitochondrial reactive oxygen species. In the present study, we examined the effect of L5 on mitochondrial function in cardiomyocytes.

METHODS

We used the Seahorse XF24 extracellular flux analyzer to examine the effect of L5 and its components on mitochondrial energy production. The effects of L5 on mitochondrial morphology were examined by immunofluorescence using MitoTracker Green FM and the corresponding probes in H9c2 cardiomyoblasts. Mitochondrial permeability was assessed by using a calcium-induced swelling assay with a voltage-dependent anion-selective channel (VDAC) inhibitor to determine VDAC-dependence both in vitro and in vivo. L5 without ApoE, referred to as △L5, was used to clarify the role of ApoE in L5-induced mitochondrial dysfunction.

RESULTS

L5 not only significantly decreased basal (P < 0.05) and maximal respiration (P < 0.01) but also reduced spare respiratory capacity (P < 0.01) in H9c2 cells. Additionally, L5 caused phosphorylation of Drp1 and mitochondrial fission. Recombinant ApoE mimicked the mitochondrial effects of L5, but △L5 did not cause similar effects. After entering cells, ApoE on L5 colocalized with mitochondrial VDAC and caused mitochondria swelling both in vitro and in vivo. This effect was also seen with recombinant ApoE but not △L5.

CONCLUSIONS

ApoE may play an important role in electronegative LDL-induced mitochondrial dysfunction through the opening of the mitochondrial permeability transition pore via the interaction of ApoE and VDAC.

摘要

目的

L5 是一种高度带负电荷的低密度脂蛋白(LDL)亚型,可能与动脉粥样硬化和心血管疾病的发展有关。正常的 LDL 主要由载脂蛋白(Apo)B 组成,但 L5 还有其他蛋白质,如 ApoE。我们之前的研究表明,L5 通过增加线粒体活性氧诱导内皮细胞衰老。在本研究中,我们研究了 L5 对心肌细胞线粒体功能的影响。

方法

我们使用 Seahorse XF24 细胞外通量分析仪检测 L5 及其成分对线粒体能量产生的影响。我们使用 MitoTracker Green FM 免疫荧光法和 H9c2 心肌细胞中的相应探针检测 L5 对线粒体形态的影响。我们使用钙离子诱导肿胀试验和电压依赖性阴离子选择性通道(VDAC)抑制剂评估线粒体通透性,以确定 VDAC 在体外和体内的依赖性。没有 ApoE 的 L5(称为△L5)用于阐明 ApoE 在 L5 诱导的线粒体功能障碍中的作用。

结果

L5 不仅显著降低了 H9c2 细胞的基础呼吸(P<0.05)和最大呼吸(P<0.01),还降低了备用呼吸能力(P<0.01)。此外,L5 导致 Drp1 磷酸化和线粒体分裂。重组 ApoE 模拟了 L5 的线粒体效应,但△L5 没有引起类似的效应。进入细胞后,L5 上的 ApoE 与线粒体 VDAC 共定位,并在体外和体内引起线粒体肿胀。这种效应也见于重组 ApoE,但不见于△L5。

结论

ApoE 可能通过 ApoE 与 VDAC 的相互作用,通过打开线粒体通透性转换孔,在带负电荷的 LDL 诱导的线粒体功能障碍中发挥重要作用。

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