首页> 美国卫生研究院文献>The Journal of Biological Chemistry >The gluconate shunt is an alternative route for directing glucose into the pentose phosphate pathway in fission yeast
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The gluconate shunt is an alternative route for directing glucose into the pentose phosphate pathway in fission yeast

机译:葡萄糖酸盐分流是将葡萄糖导入裂变酵母中戊糖磷酸途径的另一种途径

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摘要

Glycolysis and the pentose phosphate pathway both play a central role in the degradation of glucose in all domains of life. Another metabolic route that can facilitate glucose breakdown is the gluconate shunt. In this shunt glucose dehydrogenase and gluconate kinase catalyze the two-step conversion of glucose into the pentose phosphate pathway intermediate 6-phosphogluconate. Despite the presence of these enzymes in many organisms, their only established role is in the production of 6-phosphogluconate for the Entner-Doudoroff pathway. In this report we performed metabolic profiling on a strain of Schizosaccharomyces pombe lacking the zinc-responsive transcriptional repressor Loz1 with the goal of identifying metabolic pathways that were altered by cellular zinc status. This profiling revealed that loz1Δ cells accumulate higher levels of gluconate. We show that the altered gluconate levels in loz1Δ cells result from increased expression of gcd1. By analyzing the activity of recombinant Gcd1 in vitro and by measuring gluconate levels in strains lacking enzymes of the gluconate shunt we demonstrate that Gcd1 encodes a novel NADP+-dependent glucose dehydrogenase that acts in a pathway with the Idn1 gluconate kinase. We also find that cells lacking gcd1 and zwf1, which encode the first enzyme in the pentose phosphate pathway, have a more severe growth phenotype than cells lacking zwf1. We propose that in S. pombe Gcd1 and Idn1 act together to shunt glucose into the pentose phosphate pathway, creating an alternative route for directing glucose into the pentose phosphate pathway that bypasses hexokinase and the rate-limiting enzyme glucose-6-phosphate dehydrogenase.
机译:糖酵解和磷酸戊糖途径均在生活的所有领域中对葡萄糖的降解中起着核心作用。可以促进葡萄糖分解的另一种代谢途径是葡萄糖酸盐分流。在这种分流中,葡萄糖脱氢酶和葡萄糖酸激酶催化葡萄糖两步转化为戊糖磷酸途径中间的6-磷酸葡萄糖酸酯。尽管在许多生物中都存在这些酶,但它们唯一确定的作用是为Entner-Doudoroff途径生产6-磷酸葡萄糖酸。在本报告中,我们对缺乏锌反应性转录抑制因子Loz1的粟酒裂殖酵母进行了代谢谱分析,目的是鉴定被细胞锌状态改变的代谢途径。该分析表明loz1Δ细胞积累了更高水平的葡萄糖酸盐。我们显示,loz1Δ细胞中改变的葡萄糖酸盐水平是由gcd1表达增加引起的。通过分析重组Gcd1的体外活性,并通过测量缺乏葡萄糖分流酶的菌株中的葡萄糖水平,我们证明了Gcd1编码一种新的NADP + 依赖性葡萄糖脱氢酶,该酶与Idn1相互作用葡萄糖酸激酶。我们还发现缺少gcd1和zwf1(编码戊糖磷酸途径中第一个酶)的细胞比缺少zwf1的细胞具有更严重的生长表型。我们建议,在粟酒裂殖酵母中,Gcd1和Idn1共同起作用,将葡萄糖分流到磷酸戊糖途径中,从而创建了一种引导葡萄糖进入磷酸戊糖途径的替代途径,该途径绕过了己糖激酶和限速酶葡萄糖-6-磷酸脱氢酶。

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