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首页> 外文期刊>Antioxidants and redox signalling >The radical-binding lipocalin A1M binds to a complex i subunit and protects mitochondrial structure and function
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The radical-binding lipocalin A1M binds to a complex i subunit and protects mitochondrial structure and function

机译:结合自由基的脂蛋白A1M与复杂的i亚基结合并保护线粒体的结构和功能

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Aims: During cell death, energy-consuming cell degradation and recycling programs are performed. Maintenance of energy delivery during cell death is therefore crucial, but the mechanisms to keep the mitochondrial functions intact during these processes are poorly understood. We have investigated the hypothesis that the heme- and radical-binding ubiquitous protein α1-microglobulin (A1M) is involved in protection of the mitochondria against oxidative insult during cell death. Results: Using blood cells, keratinocytes, and liver cells, we show that A1M binds with high affinity to apoptosis-induced cells and is localized to mitochondria. The mitochondrial Complex I subunit NDUFAB1 was identified as a major molecular target of the A1M binding. Furthermore, A1M was shown to inhibit the swelling of mitochondria, and to reverse the severely abrogated ATP-production of mitochondria when exposed to heme and reactive oxygen species (ROS). Innovation: Import of the radical- and heme-binding protein A1M from the extracellular compartment confers protection of the mitochondrial structure and function during cellular insult. Conclusion: A1M binds to a subunit of Complex I and has a role in assisting the mitochondria to maintain its energy delivery during cell death. A1M may also, at the same time, counteract and eliminate the ROS generated by the mitochondrial respiration to prevent oxidative damage to surrounding healthy tissue.
机译:目的:在细胞死亡期间,执行耗能的细胞降解和回收计划。因此,在细胞死亡期间维持能量传递至关重要。但是,在这些过程中保持线粒体功能完整的机制却知之甚少。我们已经研究了血红素和自由基结合的泛在蛋白α1-微球蛋白(A1M)参与保护线粒体免受细胞死亡期间的氧化损伤的假说。结果:使用血细胞,角质形成细胞和肝细胞,我们显示A1M与凋亡诱导的细胞具有高亲和力,并定位于线粒体。线粒体复合体I亚基NDUFAB1被确定为A1M结合的主要分子目标。此外,A1M被证明可抑制线粒体肿胀,并在暴露于血红素和活性氧(ROS)时逆转线粒体严重废除的ATP产生。创新:从细胞外区室导入自由基和血红素结合蛋白A1M可以保护细胞损伤期间的线粒体结构和功能。结论:A1M与复合物I的一个亚基结合,并在细胞死亡期间协助线粒体维持其能量传递。同时,A1M还可以抵消并消除线粒体呼吸所产生的ROS,以防止对周围健康组织的氧化损伤。

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