Li Xiangyun, Zhang Yuan, Yu Jianbo, Mu Rui, Wu Lili, Shi Jia, Gong Lirong, Liu Daquan
Department of Anesthesiology, Tianjin Nankai Hospital, Tianjin Medical University, Tianjin 300100, P.R. China.
Department of Pharmacology, Institute of Integrated Traditional Chinese and Western Medicine for Acute Abdominal Diseases, Tianjin 300100, P.R. China.
Exp Ther Med. 2018 Aug;16(2):1529-1537. doi: 10.3892/etm.2018.6290. Epub 2018 Jun 12.
Mitochondrial function and morphology are dynamically regulated by fusion and fission. Heme oxygenase-1 (HO-1), which may be upregulated by protein kinase C-α (PKC-α), improves mitochondrial dynamics by controlling the balance between fusion and fission and . However, whether the PKC-α/HO-1 signaling pathway is one of the underlying mechanisms in adjusting mitochondrial dynamics in lipopolysaccharide (LPS)-activated macrophages has remained elusive. To explore this, NR8383 cells were pre-treated with PKC-α inhibitor Go6976 or PKC-α activator phorbol-12-myristate-13-acetate for 30 min and then stimulated with LPS for 24 h. Next, the expression of PKC-α, HO-1, mitofusin 1 (Mfn1) and mitofusin 2 (Mfn2), optic atrophy 1 (OPA1), dynamin-related protein 1 (Drp1) and fission 1 (Fis1) was detected to evaluate the possible implication of the PKC-α/HO-1 signaling pathway in the LPS-induced NR8383 cells. The results indicated that activation of the PKC-α/HO-1 signaling pathway increased superoxide dismutase activities and the respiratory control ratio (RCR), decreased the levels of malondialdehyde, reactive oxygen species (ROS), Drp1 and Fis1, and simultaneously enhanced the levels of Mfn1, Mfn2 and OPA1. In contrast, the PKC-α inhibitor decreased the expression of RCR, Mfn1, Mfn2 and OPA1, and increased the expression of MDA and ROS in NR8383 cells. The results suggest that activation of the PKC-α/HO-1 signaling pathway is necessary for the balance of mitochondrial dynamics and oxidative stress in macrophages, which provides clues for probing novel strategies against the detrimental effects of sepsis and other disease states.
线粒体功能和形态通过融合与裂变受到动态调节。血红素加氧酶-1(HO-1)可被蛋白激酶C-α(PKC-α)上调,它通过控制融合与裂变之间的平衡来改善线粒体动力学。然而,PKC-α/HO-1信号通路是否是脂多糖(LPS)激活的巨噬细胞中线粒体动力学调节的潜在机制之一仍不清楚。为了探究这一点,NR8383细胞先用PKC-α抑制剂Go6976或PKC-α激活剂佛波醇-12-肉豆蔻酸酯-13-乙酸酯预处理30分钟,然后用LPS刺激24小时。接下来,检测PKC-α、HO-1、线粒体融合蛋白1(Mfn1)、线粒体融合蛋白2(Mfn2)、视神经萎缩蛋白1(OPA1)、动力相关蛋白1(Drp1)和裂变蛋白1(Fis1)的表达,以评估PKC-α/HO-1信号通路在LPS诱导的NR8383细胞中的可能作用。结果表明,PKC-α/HO-1信号通路的激活增加了超氧化物歧化酶活性和呼吸控制率(RCR),降低了丙二醛、活性氧(ROS)、Drp1和Fis1的水平,同时提高了Mfn1、Mfn2和OPA1的水平。相反,PKC-α抑制剂降低了NR8383细胞中RCR、Mfn1、Mfn2和OPA1的表达,并增加了MDA和ROS的表达。结果表明,PKC-α/HO-1信号通路的激活对于巨噬细胞中线粒体动力学和氧化应激的平衡是必要的,这为探索对抗败血症和其他疾病状态有害影响的新策略提供了线索。