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线粒体 sAC-cAMP-PKA 轴调节 ΔΨ 依赖的呼吸链复合物的控制系数:呼吸体可塑性的证据。

Mitochondrial sAC-cAMP-PKA Axis Modulates the ΔΨ-Dependent Control Coefficients of the Respiratory Chain Complexes: Evidence of Respirasome Plasticity.

机构信息

Department of Clinical and Experimental Medicine, University of Foggia, 71122 Foggia, Italy.

Department of Biology, College of Science, Salahaddin University-Erbil, Erbil 44001, Kurdistan, Iraq.

出版信息

Int J Mol Sci. 2023 Oct 13;24(20):15144. doi: 10.3390/ijms242015144.

Abstract

The current view of the mitochondrial respiratory chain complexes I, III and IV foresees the occurrence of their assembly in supercomplexes, providing additional functional properties when compared with randomly colliding isolated complexes. According to the plasticity model, the two structural states of the respiratory chain may interconvert, influenced by the intracellular prevailing conditions. In previous studies, we suggested the mitochondrial membrane potential as a factor for controlling their dynamic balance. Here, we investigated if and how the cAMP/PKA-mediated signalling influences the aggregation state of the respiratory complexes. An analysis of the inhibitory titration profiles of the endogenous oxygen consumption rates in intact HepG2 cells with specific inhibitors of the respiratory complexes was performed to quantify, in the framework of the metabolic flux theory, the corresponding control coefficients. The attained results, pharmacologically inhibiting either PKA or sAC, indicated that the reversible phosphorylation of the respiratory chain complexes/supercomplexes influenced their assembly state in response to the membrane potential. This conclusion was supported by the scrutiny of the available structure of the CI/CIII/CIV respirasome, enabling us to map several PKA-targeted serine residues exposed to the matrix side of the complexes I, III and IV at the contact interfaces of the three complexes.

摘要

目前认为,线粒体呼吸链复合物 I、III 和 IV 会组装成超复合物,与随机碰撞的分离复合物相比,提供了额外的功能特性。根据可塑性模型,呼吸链的两种结构状态可能会相互转换,这受到细胞内流行条件的影响。在之前的研究中,我们提出线粒体膜电位是控制其动态平衡的因素之一。在这里,我们研究了 cAMP/PKA 介导的信号是否以及如何影响呼吸复合物的聚集状态。通过用呼吸复合物的特异性抑制剂对完整 HepG2 细胞的内源性耗氧率进行抑制性滴定分析,根据代谢通量理论对相应的控制系数进行定量分析。获得的结果表明,PKA 或 sAC 的药理学抑制表明,呼吸链复合物/超复合物的可逆磷酸化影响了它们的组装状态,以响应膜电位。这一结论得到了可获得的 CI/CIII/CIV 呼吸体结构的支持,使我们能够在三个复合物的接触界面处对基质侧暴露的几种 PKA 靶向丝氨酸残基进行映射。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8d46/10607245/5e3af8485a65/ijms-24-15144-g001.jpg

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