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Direct structural insight into the substrate-shuttling mechanism of yeast fatty acid synthase by electron cryomicroscopy

机译:通过电子冷冻显微镜直接了解酵母脂肪酸合酶的底物穿梭机理

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摘要

Yeast fatty acid synthase (FAS) is a 2.6-MDa barrel-shaped multienzyme complex, which carries out cyclic synthesis of fatty acids. By electron cryomicroscopy of single particles we obtained a three-dimensional map of yeast FAS at 5.9-Å resolution. Compared to the crystal structures of fungal FAS, the EM map reveals major differences and new features that indicate a considerably different arrangement of the complex in solution compared to the crystal structures, as well as a high degree of variance inside the barrel. Distinct density regions in the reaction chambers next to each of the catalytic domains fitted the substrate-binding acyl carrier protein (ACP) domain. In each case, this resulted in the expected distance of ∼18 Å from the ACP substrate-binding site to the active site of the catalytic domains. The multiple, partially occupied positions of the ACP within the reaction chamber provide direct structural insight into the substrate-shuttling mechanism of fatty acid synthesis in this large cellular machine.
机译:酵母脂肪酸合成酶(FAS)是一种2.6-MDa桶形多酶复合物,可进行脂肪酸的循环合成。通过电子冷冻显微镜检查单个颗粒,我们获得了5.9- at分辨率的酵母FAS的三维图。与真菌FAS的晶体结构相比,EM图谱显示出主要差异和新特征,这些特征和新特征表明与晶体结构相比,溶液中复合物的排列方式显着不同,并且桶内高度变化。靠近每个催化结构域的反应室中不同的密度区域适合于底物结合酰基载体蛋白(ACP)结构域。在每种情况下,这导致从ACP底物结合位点到催化结构域的活性位点的预期距离约为18°。 ACP在反应室内的多个,部分占据的位置提供了对这种大型细胞机器中脂肪酸合成的底物穿梭机制的直接结构了解。

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