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Mitochondrial peptides-appropriate options for therapeutic exploitation

机译:Mitochondrial peptides-appropriate options for therapeutic exploitation

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Besides their well-known function in cellular bioenergetics, the role of mitochondria in signaling regulation of cells homeostasis and survival has been uncovered during the past few decades. Possessing an independent genome and a unique genetic code, mitochondria biosynthesize protective stress response factors, the "mitochondrial-derived peptides," import and deposit peptides within their matrix and are the target of peptides bound to bioactive agents, aiming at alleviation of pathology-related malfunction of the electron transport chain. As the rapidly evolving field of mitochondrial peptides is appropriate for therapeutic exploitation, a brief overview of the major recent findings is timely needed. Here, the focus is on the following issues: (i) the biological effects of mitochondrial-derived peptides (humanin, humanin-like peptides and MOTS-c) and their use in therapy, (ii) the abnormal accumulation of beta-amyloid peptide within the mitochondrial matrix and (iii) the effectiveness of "mitochondrial cell-penetrating/targeting peptides" as vehicles for delivery of bioactive agents into dysfunctional mitochondria.
机译:除了他们在细胞生物能器中的众所周知的功能之外,线粒体在过去几十年中已经发现了线粒体在传导稳态和生存中的信号调节中的作用。拥有独立的基因组和独特的遗传密码,线粒体生物合成保护应力反应因子,“线粒体衍生的肽”,其基质内的进口和沉积肽,是与生物活性剂结合的肽的靶标,旨在减轻有关病理学相关的电子传输链故障。随着线粒体肽的快速发展领域适用于治疗性剥削,还需要简要概述主要的最近调查结果。在这里,重点是以下问题:(i)线粒体衍生肽(人素,人素样肽和MOTS-C)的生物学效应及其在治疗中的使用,(ii)β-淀粉样肽的异常积累在线粒体基质中和(iii)内的“线粒体细胞穿透/靶向肽”的有效性作为用于将生物活性剂递送到功能障碍线粒体中的载体。

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