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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Genetic evidence for the requirement of the endocytic pathway in the uptake of coenzyme Q6 in Saccharomyces cerevisiae.
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Genetic evidence for the requirement of the endocytic pathway in the uptake of coenzyme Q6 in Saccharomyces cerevisiae.

机译:酿酒酵母中摄取辅酶Q6时需要内吞途径的遗传证据。

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摘要

Coenzyme Q is an isoprenylated benzoquinone lipid that functions in respiratory electron transport and as a lipid antioxidant. Dietary supplementation with Q is increasingly used as a therapeutic for treatment of mitochondrial and neurodegenerative diseases, yet little is known regarding the mechanism of its uptake. As opposed to other yeast backgrounds, EG103 strains are unable to import exogenous Q(6) to the mitochondria. Furthermore, the distribution of exogenous Q(6) among endomembranes suggests an impairment of the membrane traffic at the level of the endocytic pathway. This fact was confirmed after the detection of defects in the incorporation of FM4-64 marker and CPY delivery to the vacuole. A similar effect was demonstrated in double mutant strains in Q(6) synthesis and several steps of endocytic process; those cells are unable to uptake exogenous Q(6) to the mitochondria and restore the growth on non-fermentable carbon sources. Additional data about the positive effect of peptone presence for exogenous Q(6) uptake support the hypothesis that Q(6) is transported to mitochondria through an endocytic-based system.
机译:辅酶Q是异戊烯基化的苯醌脂质,在呼吸电子运输中发挥功能,并作为脂质抗氧化剂。膳食补充Q越来越多地用作线粒体和神经退行性疾病的治疗剂,但对其吸收机理知之甚少。与其他酵母背景相反,EG103菌株无法将外源Q(6)导入线粒体。此外,内膜中外源性Q(6)的分布表明内吞途径水平的膜运输受到损害。在检测到FM4-64标记掺入和CPY递送至液泡中的缺陷后,证实了这一事实。在Q(6)合成和内吞过程的几个步骤中的双重突变菌株中证明了类似的效果。这些细胞无法摄取线粒体的外源性Q(6),无法恢复非发酵碳源上的生长。有关蛋白presence存在对外源Q(6)摄取的积极影响的其他数据支持以下假设:Q(6)通过基于内吞的系统转运至线粒体。

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