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多种营养转运蛋白使细胞能够减轻速率-亲和力权衡。

Multiple nutrient transporters enable cells to mitigate a rate-affinity tradeoff.

机构信息

School of Biological Sciences, University of Edinburgh, Edinburgh, United Kingdom.

出版信息

PLoS Comput Biol. 2022 Apr 25;18(4):e1010060. doi: 10.1371/journal.pcbi.1010060. eCollection 2022 Apr.

Abstract

Eukaryotic genomes often encode multiple transporters for the same nutrient. For example, budding yeast has 17 hexose transporters (HXTs), all of which potentially transport glucose. Using mathematical modelling, we show that transporters that use either facilitated diffusion or symport can have a rate-affinity tradeoff, where an increase in the maximal rate of transport decreases the transporter's apparent affinity. These changes affect the import flux non-monotonically, and for a given concentration of extracellular nutrient there is one transporter, characterised by its affinity, that has a higher import flux than any other. Through encoding multiple transporters, cells can therefore mitigate the tradeoff by expressing those transporters with higher affinities in lower concentrations of nutrients. We verify our predictions using fluorescent tagging of seven HXT genes in budding yeast and follow their expression over time in batch culture. Using the known affinities of the corresponding transporters, we show that their regulation in glucose is broadly consistent with a rate-affinity tradeoff: as glucose falls, the levels of the different transporters peak in an order that mostly follows their affinity for glucose. More generally, evolution is constrained by tradeoffs. Our findings indicate that one such tradeoff often occurs in the cellular transport of nutrients.

摘要

真核生物基因组通常会为同一种营养物质编码多个转运蛋白。例如,酿酒酵母有 17 种己糖转运蛋白(HXTs),它们都有可能运输葡萄糖。我们通过数学建模表明,利用易化扩散或协同转运的转运蛋白可能存在速率-亲和力权衡,即运输的最大速率增加会降低转运蛋白的表观亲和力。这些变化会使输入通量呈非单调变化,对于给定的细胞外营养物质浓度,有一种转运蛋白以其亲和力为特征,其输入通量高于其他任何转运蛋白。通过编码多个转运蛋白,细胞可以通过在较低浓度的营养物质中表达具有较高亲和力的转运蛋白来减轻这种权衡。我们使用荧光标记的方法在酿酒酵母中标记了七个 HXT 基因,并在分批培养中跟踪它们随时间的表达。利用相应转运蛋白的已知亲和力,我们表明它们在葡萄糖中的调控基本上与速率-亲和力权衡一致:随着葡萄糖的下降,不同转运蛋白的水平按其对葡萄糖的亲和力顺序达到峰值。更一般地说,进化受到权衡的限制。我们的发现表明,在细胞对营养物质的运输中,经常会出现这样的权衡之一。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1ef4/9071158/d34b1153af37/pcbi.1010060.g001.jpg

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