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Influence of CSP 310 and CSP 310-like proteins from cereals on mitochondrial energetic activity and lipid peroxidation in vitro and in vivo

机译:谷物中CSP 310和CSP 310样蛋白对体内外线粒体能量活性和脂质过氧化的影响

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摘要

BackgroundThe development of chilling and freezing injury symptoms in plants is known to frequently coincide with peroxidation of free fatty acids. Mitochondria are one of the major sources of reactive oxygen species during cold stress. Recently it has been suggested that uncoupling of oxidation and phosphorylation in mitochondria during oxidative stress can decrease ROS formation by mitochondrial respiratory chain generation. At the same time, it is known that plant uncoupling mitochondrial protein (PUMP) and other UCP-like proteins are not the only uncoupling system in plant mitochondria. All plants have cyanide-resistant oxidase (AOX) whose activation causes an uncoupling of respiration and oxidative phosphorylation. Recently it has been found that in cereals, cold stress protein CSP 310 exists, and that this causes uncoupling of oxidation and phosphorylation in mitochondria.
机译:背景技术已知植物中冷害和冻害症状的发展经常与游离脂肪酸的过氧化作用同时发生。线粒体是冷胁迫期间活性氧的主要来源之一。最近,有人提出在氧化应激过程中线粒体中氧化和磷酸化的解偶联可以减少线粒体呼吸链生成引起的ROS形成。同时,众所周知,植物解偶联线粒体蛋白(PUMP)和其他类似UCP的蛋白并不是植物线粒体中唯一的解偶联系统。所有植物均具有抗氰化物的氧化酶(AOX),其活化导致呼吸作用和氧化磷酸化的解偶联。最近,已经发现在谷物中存在冷胁迫蛋白CSP 310,并且这导致线粒体中的氧化和磷酸化解偶联。

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