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Interaction between peroxisomes and mitochondria in fatty acid metabolism

机译:过氧化物酶体与线粒体在脂肪酸代谢中的相互作用

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Peroxisomes and mitochondria are ubiquitously found organelles. They both are dynamic structures able to divide, to fuse and to undergo autophagic processes. Their activities are dependent on proteins that are, for most (mitochondria) or all (peroxisome) of them, synthesized in the cytosol from the nuclear genome. Nevertheless, the membrane structures and the DNA content differ between these two organelles. Mitochondria possess a small circular genome while peroxisomes don’t. The control of their dynamic is dependent on specific factors even if some of those are able to affect both. These two organelles are metabolically connected: they are both involved in lipid metabolism. They are both able to beta oxidize fatty acids and are implicated in ROS production. However, their precise function in these metabolic pathways and their physiological functions are different. While mitochondrial metabolism is closely related to energy production, peroxisome does not seem to be associated with energy production but with the production of bioactive molecules and in detoxification processes.
机译:过氧化物酶体和线粒体是普遍存在的细胞器。它们都是能够分裂,融合和经历自噬过程的动态结构。它们的活性取决于蛋白质(对于大多数(线粒体)或全部(过氧化物酶体))是从核基因组的细胞质中合成的。然而,这两个细胞器之间的膜结构和DNA含量不同。线粒体具有小的环状基因组,而过氧化物酶体则没有。它们的动态控制取决于特定的因素,即使其中一些因素能够影响两者。这两个细胞器通过代谢相连:它们都参与脂质代谢。它们都能够β氧化脂肪酸,并且与ROS的产生有关。然而,它们在这些代谢途径中的精确功能及其生理功能是不同的。虽然线粒体代谢与能量产生紧密相关,但过氧化物酶似乎与能量产生无关,而与生物活性分子的产生以及排毒过程有关。

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