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High-energy guanine nucleotides as a signal capable of linking growth to cellular energy status via the control of gene transcription

机译:高能鸟嘌呤核苷酸作为一种信号能够通过控制基因转录将生长与细胞能量状态联系起来

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摘要

This mini-review considers the idea that guanylate nucleotide energy charge acts as an integrative signal for the regulation of gene expression in eukaryotic cells and discusses possible routes for that signal’s transduction. Gene expression is intimately linked with cell nutrition and diverse signaling systems serve to coordinate the synthesis of proteins required for growth and proliferation with the prevailing cellular nutritional status. Using short pathways for the inducible and futile consumption of ATP or GTP in engineered cells of Saccharomyces cerevisiae, we have recently shown that GTP levels can also play a role in determining how genes act to respond to changes in cellular energy supply. This review aims to interpret the importance of GTP as an integrative signal in the context of an increasing body of evidence indicating the spatio-temporal complexity of cellular de novo purine nucleotide biosynthesis.
机译:这篇小型综述考虑了鸟苷酸核苷酸能电荷作为真核细胞中基因表达调控的整合信号的想法,并讨论了该信号转导的可能途径。基因表达与细胞营养密切相关,各种信号系统可协调生长和增殖所需的蛋白质合成与当前细胞的营养状况。利用酿酒酵母工程细胞中可诱导的和无用的ATP或GTP消耗的短路径,我们最近发现,GTP水平在确定基因如何响应细胞能量供应变化方面也起着作用。这篇综述旨在解释GTP作为整合信号的重要性,因为越来越多的证据表明细胞从头嘌呤核苷酸生物合成的时空复杂性。

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