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线粒体融合蛋白表达下调为 H9c2 心肌细胞提供经典坏死性细胞凋亡保护。

Downregulation of Mitochondrial Fusion Protein Expression Affords Protection from Canonical Necroptosis in H9c2 Cardiomyoblasts.

机构信息

Department of Cardiovascular, Renal and Metabolic Medicine, Sapporo Medical University School of Medicine, Sapporo 060-8543, Japan.

Department of Medicine and Therapeutics (MEDT), Faculty of Medicine, Chinese University of Hong Kong (CUHK), Hong Kong, China.

出版信息

Int J Mol Sci. 2024 Mar 2;25(5):2905. doi: 10.3390/ijms25052905.

Abstract

Necroptosis, a form of necrosis, and alterations in mitochondrial dynamics, a coordinated process of mitochondrial fission and fusion, have been implicated in the pathogenesis of cardiovascular diseases. This study aimed to determine the role of mitochondrial morphology in canonical necroptosis induced by a combination of TNFα and zVAD (TNF/zVAD) in H9c2 cells, rat cardiomyoblasts. Time-course analyses of mitochondrial morphology showed that mitochondria were initially shortened after the addition of TNF/zVAD and then their length was restored, and the proportion of cells with elongated mitochondria at 12 h was larger in TNF/zVAD-treated cells than in non-treated cells (16.3 ± 0.9% vs. 8.0 ± 1.2%). The knockdown of dynamin-related protein 1 (Drp1) and fission 1, fission promoters, and treatment with Mdivi-1, a Drp-1 inhibitor, had no effect on TNF/zVAD-induced necroptosis. In contrast, TNF/zVAD-induced necroptosis was attenuated by the knockdown of mitofusin 1/2 (Mfn1/2) and optic atrophy-1 (Opa1), proteins that are indispensable for mitochondrial fusion, and the attenuation of necroptosis was not canceled by treatment with Mdivi-1. The expression of TGFβ-activated kinase (TAK1), a negative regulator of RIP1 activity, was upregulated and the TNF/zVAD-induced RIP1-Ser166 phosphorylation, an index of RIP1 activity, was mitigated by the knockdown of Mfn1/2 or Opa1. Pharmacological TAK1 inhibition attenuated the protection afforded by Mfn1/2 and Opa1 knockdown. In conclusion, the inhibition of mitochondrial fusion increases TAK1 expression, leading to the attenuation of canonical necroptosis through the suppression of RIP1 activity.

摘要

细胞坏死是一种坏死形式,线粒体动力学的改变是线粒体分裂和融合的协调过程,它们与心血管疾病的发病机制有关。本研究旨在确定线粒体形态在 TNFα 和 zVAD(TNF/zVAD)联合诱导 H9c2 细胞(大鼠心肌细胞)经典坏死中的作用。线粒体形态的时程分析表明,TNF/zVAD 加入后线粒体最初缩短,然后长度恢复,12 小时时具有伸长线粒体的细胞比例在 TNF/zVAD 处理的细胞中比未处理的细胞更大(16.3±0.9%对 8.0±1.2%)。下调与分裂相关的蛋白 1(Drp1)和分裂 1、分裂启动子,以及用 Drp1 抑制剂 Mdivi-1 处理对 TNF/zVAD 诱导的坏死没有影响。相反,线粒体融合所必需的蛋白,包括融合蛋白 1/2(Mfn1/2)和视神经萎缩蛋白 1(Opa1)的下调,减弱了 TNF/zVAD 诱导的坏死,而 Mdivi-1 的处理并不能消除坏死的减弱。转化生长因子β激活激酶(TAK1),一种 RIP1 活性的负调节剂的表达上调,并且 TNF/zVAD 诱导的 RIP1-Ser166 磷酸化,一种 RIP1 活性的指标,被 Mfn1/2 或 Opa1 的下调减轻。药理学 TAK1 抑制减弱了 Mfn1/2 和 Opa1 下调所提供的保护。总之,线粒体融合的抑制增加了 TAK1 的表达,通过抑制 RIP1 活性,导致经典坏死的减弱。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a3fc/10932252/9d01c74177bc/ijms-25-02905-g001.jpg

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