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Oxygen content of transmembrane proteins over macroevolutionary time scales

机译:跨膜时间跨膜蛋白的氧含量

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We observe that the time of appearance of cellular compartmentalization correlates with atmospheric oxygen concentration. To explore this correlation, we predict and characterize the topology of all transmembrane proteins in 19 taxa and correlate differences in topology with historical atmospheric oxygen concentrations. Here we show that transmembrane proteins, individually and as a group, were probably selectively excluding oxygen in ancient ancestral taxa, and that this constraint decreased over time when atmospheric oxygen levels rose. As this constraint decreased, the size and number of communication-related transmembrane proteins increased. We suggest the hypothesis that atmospheric oxygen concentrations affected the timing of the evolution of cellular compartmentalization by constraining the size of domains necessary for communication across membranes.
机译:我们观察到细胞间隔区的出现时间与大气中的氧气浓度相关。为了探索这种相关性,我们预测和表征了19个分类单元中所有跨膜蛋白的拓扑结构,并将拓扑结构中的差异与历史大气中的氧气浓度相关联。在这里,我们显示出跨膜蛋白,无论是单独还是作为一个整体,都可能选择性地排除了古代祖先分类群中的氧气,并且当大气中的氧气水平上升时,这种限制随着时间的推移而降低。随着此限制的减少,与通信相关的跨膜蛋白的大小和数量增加。我们提出这样的假说,即大气中的氧气浓度通过限制跨膜通讯所需的域的大小,影响了细胞区室化的演变时间。

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