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首页> 外文期刊>Cell death discovery. >GRK2 moderates the acute mitochondrial damage to ionizing radiation exposure by promoting mitochondrial fission/fusion
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GRK2 moderates the acute mitochondrial damage to ionizing radiation exposure by promoting mitochondrial fission/fusion

机译:GRK2通过促进线粒体的裂变/融合来减轻线粒体对电离辐射暴露的急性损伤

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The modern understanding of the G protein-coupled receptor kinase 2 has grown towards the definition of a stress protein, for its ability to rapidly compartmentalize within the cell in response to acute stimulation. Also, mitochondria can be regulated by GRK2 localization. We show that Ionizing Radiation (IR) exposure acutely damages mitochondria regarding mass, morphology, and respiration, with recovery in a framework of hours. This phenomenon is actively regulated by GRK2, whose overexpression results to be protective, and reciprocally, deletion accelerates degenerative processes. The regulatory effects of the kinase involve a new interactome that includes binding HSP90 and binding and phosphorylation of the key molecules involved in the process of mitochondrial fusion and recovery: MFN-1 and 2.
机译:对G蛋白偶联受体激酶2的现代理解已发展为应激蛋白的定义,因为它具有响应急性刺激而在细胞内快速区分开的能力。而且,线粒体可以通过GRK2定位来调节。我们显示,电离辐射(IR)暴露会严重破坏线粒体的质量,形态和呼吸,并在数小时内恢复。该现象由GRK2积极调控,其过表达导致保护作用,反之,缺失会加速变性过程。该激酶的调节作用涉及一个新的相互作用组,该相互作用组包括结合HSP90以及线粒体融合和恢复过程中涉及的关键分子的结合和磷酸化:MFN-1和2。

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