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Gluconeogenesis: An ancient biochemical pathway with a new twist

机译:葡糖生成:一种古代生化途径,具有新的扭曲

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Synthesis of sugars from simple carbon sources is critical for survival of animals under limited nutrient availability. Thus, sugar-synthesizing enzymes should be present across the entire metazoan spectrum. Here, we explore the evolution of glucose and trehalose synthesis using a phylogenetic analysis of enzymes specific for the two pathways. Our analysis reveals that the production of trehalose is the more ancestral biochemical process, found in single cell organisms and primitive metazoans, but also in insects. The gluconeogenic-specific enzyme glucose-6-phosphatase (G6Pase) first appears in Cnidaria, but is also present in Echinodermata, Mollusca and Vertebrata. Intriguingly, some species of nematodes and arthropods possess the genes for both pathways. Moreover, expression data from Drosophila suggests that G6Pase and, hence, gluconeogenesis, initially had a neuronal function. We speculate that in insectsand possibly in some vertebratesgluconeogenesis may be used as a means of neuronal signaling.
机译:来自简单碳源的糖的合成对于在有限的营养可用性下对动物的存活至关重要。因此,应在整个聚唑烷光谱上存在糖合成酶。在这里,我们使用针对两种途径特异的酶的系统发育分析来探讨葡萄糖和海藻糖合成的演变。我们的分析表明,海藻糖的产量是祖先生物化学过程,在单细胞生物和原始美唑烷中发现,也是昆虫。葡糖基因特异性酶葡萄糖-6-磷酸酶(G6Pase)首先出现在CNIDaria中,但也存在于Echinodermata,MOLLUSCA和椎体中。有趣的是,某些物种的线虫和节肢动物具有两种途径的基因。此外,来自果蝇的表达数据表明G6Pase和因此,葡糖生成最初具有神经元功能。我们推测,在某些椎体中可能用作神经元信号传导的手段。

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