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酵母中的半乳糖激酶可感知代谢通量,以稳定半乳糖途径的调控。

The galactokinase enzyme of yeast senses metabolic flux to stabilize galactose pathway regulation.

作者信息

Palme Julius, Li Ang, Springer Michael

机构信息

Department of Systems Biology, Harvard Medical School, Boston, MA, USA.

Broad Institute of Massachusetts Institute of Technology and Harvard, Cambridge, MA, USA.

出版信息

Nat Metab. 2025 Jan;7(1):137-147. doi: 10.1038/s42255-024-01181-x. Epub 2025 Jan 6.

Abstract

Nutrient sensors allow cells to adapt their metabolisms to match nutrient availability by regulating metabolic pathway expression. Many such sensors are cytosolic receptors that measure intracellular nutrient concentrations. One might expect that inducing the metabolic pathway that degrades a nutrient would reduce intracellular nutrient levels, destabilizing induction. However, in the galactose-responsive (GAL) pathway of Saccharomyces cerevisiae, we find that induction is stabilized by flux sensing. Previously proposed mechanisms for flux sensing postulate the existence of metabolites whose concentrations correlate with flux. The GAL pathway flux sensor uses a different principle: the galactokinase Gal1p both performs the first step in GAL metabolism and reports on flux by signalling to the GAL repressor, Gal80p. Both Gal1p catalysis and Gal1p signalling depend on the concentration of the Gal1p-GAL complex and are therefore directly correlated. Given the simplicity of this mechanism, flux sensing is probably a general feature throughout metabolic regulation.

摘要

营养传感器使细胞能够通过调节代谢途径的表达来调整其新陈代谢,以匹配营养物质的可利用性。许多这样的传感器是测量细胞内营养物质浓度的胞质受体。人们可能会认为,诱导降解营养物质的代谢途径会降低细胞内营养物质水平,从而使诱导不稳定。然而,在酿酒酵母的半乳糖应答(GAL)途径中,我们发现诱导通过通量感应得以稳定。先前提出的通量感应机制假定存在浓度与通量相关的代谢物。GAL途径通量传感器使用不同的原理:半乳糖激酶Gal1p不仅执行GAL代谢的第一步,还通过向GAL阻遏物Gal80p发出信号来报告通量。Gal1p催化和Gal1p信号传导都取决于Gal1p - GAL复合物的浓度,因此直接相关。鉴于这种机制的简单性,通量感应可能是整个代谢调节的一个普遍特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5275/11774755/428084b149a1/42255_2024_1181_Fig1_HTML.jpg

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