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甲基乙二醛是6-脱氧-5-酮果糖-1-磷酸生物合成的中间体:甲烷嗜热栖热菌中芳香族氨基酸生物合成的前体。

Methylglyoxal is an intermediate in the biosynthesis of 6-deoxy-5-ketofructose-1-phosphate: a precursor for aromatic amino acid biosynthesis in Methanocaldococcus jannaschii.

作者信息

White Robert H, Xu Huimin

机构信息

Department of Biochemistry (0308), Virginia Polytechnic Institute and State University, Blacksburg, Virginia 24061, USA.

出版信息

Biochemistry. 2006 Oct 10;45(40):12366-79. doi: 10.1021/bi061018a.

Abstract

A biosynthetic pathway is proposed for creating 6-deoxy-5-ketofructose-1-phosphate (DKFP), a precursor sugar for aromatic amino acid biosynthesis in Methanocaldococcus jannaschii. First, two possible routes were investigated to determine if a modified, established biosynthetic pathway could be responsible for generating 6-deoxyhexoses in M. jannaschii. Both the nucleoside diphosphate mannose pathway and a pathway involving nucleoside diphosphate derivatives of fructose-1-P, fructose-2-P, or fructose-1,6-bisP were tested and eliminated. The established pathways did not produce the expected intermediates nor did the anticipated enzymes have the predicted enzymatic activities. Because neither anticipated pathway could produce DKFP, M. jannaschii glucose-6-P metabolism was studied in detail to establish exactly how glucose-6-P is converted into DKFP. This detailed analysis showed that methylglyoxal and a fructose-1-P- or fructose-1,6-bisP-derived dihydroxyacetone-P fragment are key intermediates in DKFP production. Glucose-6-P readily converts to fructose-6-P, which in turn converts to fructose-1,6-bisP. Fructose-6-P and fructose-1,6-bisP convert into glyceraldehyde-3-P (Ga-P-3), which converts into methylglyoxal by a 2,3-elimination of phosphate. The MJ1585-derived enzyme catalyzes the condensation of methylglyoxal with a dihydroxyacetone-P fragment, which is derived from fructose-1-P and/or fructose-1,6-bisP, generating DKFP. The elimination of phosphate from Ga-P-3 proceeds by both enzymatic and chemical routes in cell extracts, producing sufficient concentrations of methylglyoxal to support the reaction. This work is the first report of methylglyoxal functioning in central metabolism.

摘要

本文提出了一条生物合成途径,用于生成6-脱氧-5-酮果糖-1-磷酸(DKFP),它是詹氏甲烷球菌中芳香族氨基酸生物合成的前体糖。首先,研究了两条可能的途径,以确定一条经过修饰的、已确立的生物合成途径是否能够在詹氏甲烷球菌中生成6-脱氧己糖。对核苷二磷酸甘露糖途径以及涉及果糖-1-磷酸、果糖-2-磷酸或果糖-1,6-二磷酸的核苷二磷酸衍生物的途径都进行了测试并排除。已确立的途径既没有产生预期的中间体,预期的酶也没有预测的酶活性。由于预期的途径都不能产生DKFP,因此对詹氏甲烷球菌的葡萄糖-6-磷酸代谢进行了详细研究,以确切确定葡萄糖-6-磷酸是如何转化为DKFP的。这一详细分析表明,甲基乙二醛和一个源自果糖-1-磷酸或果糖-1,6-二磷酸的二羟基丙酮磷酸片段是DKFP生成过程中的关键中间体。葡萄糖-6-磷酸很容易转化为果糖-6-磷酸,后者又转化为果糖-1,6-二磷酸。果糖-6-磷酸和果糖-1,6-二磷酸转化为甘油醛-3-磷酸(Ga-P-3),Ga-P-3通过2,3-消除磷酸转化为甲基乙二醛。MJ1585衍生的酶催化甲基乙二醛与一个源自果糖-1-磷酸和/或果糖-1,6-二磷酸的二羟基丙酮磷酸片段缩合,生成DKFP。在细胞提取物中,Ga-P-3的磷酸消除通过酶促和化学途径进行,产生足够浓度的甲基乙二醛以支持该反应。这项工作是甲基乙二醛在中心代谢中发挥作用的首次报道。

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