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Genomic Analysis of ATP Efflux in Saccharomyces cerevisiae

机译:酿酒酵母中ATP外排的基因组分析

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摘要

Adenosine triphosphate (ATP) plays an important role as a primary molecule for the transfer of chemical energy to drive biological processes. ATP also functions as an extracellular signaling molecule in a diverse array of eukaryotic taxa in a conserved process known as purinergic signaling. Given the important roles of extracellular ATP in cell signaling, we sought to comprehensively elucidate the pathways and mechanisms governing ATP efflux from eukaryotic cells. Here, we present results of a genomic analysis of ATP efflux from Saccharomyces cerevisiae by measuring extracellular ATP levels in cultures of 4609 deletion mutants. This screen revealed key cellular processes that regulate extracellular ATP levels, including mitochondrial translation and vesicle sorting in the late endosome, indicating that ATP production and transport through vesicles are required for efflux. We also observed evidence for altered ATP efflux in strains deleted for genes involved in amino acid signaling, and mitochondrial retrograde signaling. Based on these results, we propose a model in which the retrograde signaling pathway potentiates amino acid signaling to promote mitochondrial respiration. This study advances our understanding of the mechanism of ATP secretion in eukaryotes and implicates TOR complex 1 (TORC1) and nutrient signaling pathways in the regulation of ATP efflux. These results will facilitate analysis of ATP efflux mechanisms in higher eukaryotes.
机译:三磷酸腺苷(ATP)作为传递化学能以驱动生物过程的主要分子起着重要作用。 ATP在称为嘌呤能信号传导的保守过程中,在多种真核生物类群中还充当细胞外信号传导分子。考虑到细胞外ATP在细胞信号传导中的重要作用,我们试图全面阐明从真核细胞中控制ATP外排的途径和机制。在这里,我们通过测量4609个缺失突变体的培养物中胞外ATP含量,对酿酒酵母ATP外排进行基因组分析。此屏幕显示了调节细胞外ATP水平的关键细胞过程,包括晚期内体中的线粒体翻译和囊泡分选,表明外排需要ATP的产生和通过囊泡的运输。我们还观察到了证据,该证据表明,缺失涉及氨基酸信号传导和线粒体逆行信号传导的基因的菌株中ATP外排发生改变。基于这些结果,我们提出了一个模型,其中逆行信号通路增强了氨基酸信号通路,从而促进线粒体呼吸。这项研究提高了我们对真核生物中ATP分泌机制的理解,并在调节ATP外排中牵涉到TOR复合物1(TORC1)和营养信号通路。这些结果将有助于分析高等真核生物中的ATP外排机制。

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