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鉴定来自嗜酸热硫化叶菌 7 株的耐热蛋白 ST0452 的新型乙酰转移酶活性。

Identification of novel acetyltransferase activity on the thermostable protein ST0452 from Sulfolobus tokodaii strain 7.

机构信息

Research Institute for Cell Engineering, National Institute of Advanced Industrial Science and Technology (AIST), Nakoji 3-11-46, Amagasaki, Hyogo 661-0974, Japan.

出版信息

J Bacteriol. 2010 Jul;192(13):3287-93. doi: 10.1128/JB.01683-09. Epub 2010 Apr 16.

Abstract

A 401-residue-long protein, ST0452, has been identified from a thermophilic archaeon, Sulfolobus tokodaii strain 7, as a glucose-1-phosphate thymidylyltransferase (Glc-1-P TTase) homolog with a 170-residue-long extra C-terminus portion. Functional analyses of the ST0452 protein have confirmed that the protein possessed dual sugar-1-phosphate nucleotidylyltransferase (sugar-1-P NTase) activities. The 24 repeats of a signature motif sequence which has been found in bacterial acetyltransferases, (L/I/V)-(G/A/E/D)-XX-(S/T/A/V)-X, were detected at the C terminus of the ST0452 protein. This observation prompted our group to investigate the acetyltransferase activity of the ST0452 protein. Detection of the release of coenzyme A (CoA) from acetyl-CoA and the production of UDP-N-acetyl-d-glucosamine (UDP-GlcNAc) from glucosamine-1-phosphate (GlcN-1-P) and UTP in the presence of the ST0452 protein revealed that this protein possesses the GlcN-1-P-specific acetyltransferase activity. In addition, analyses of substrate specificity showed that acetyltransferase activity of the ST0452 protein is capable of catalyzing the change of galactosamine-1-phosphate (GalN-1-P) to N-acetyl-d-galactosamine-1-phosphate (GalNAc-1-P) as well as GlcN-1-P and that its sugar-1-P NTase activity is capable of producing UDP-GalNAc from GalNAc-1-P and UTP. This is the first report of a thermostable bifunctional enzyme with GalN-1-P acetyltransferase and GalNAc-1-P uridyltransferase activities. The observation reveals that the bacteria-type UDP-GlcNAc biosynthetic pathway from fructose-6-phospate is utilized in this archaeon and represents a novel biosynthetic pathway for producing UDP-GalNAc from GalN-1-P in this microorganism.

摘要

一种 401 个残基长的蛋白质,ST0452,已经从嗜热古菌 Sulfolobus tokodaii 株 7 中被鉴定为葡萄糖-1-磷酸胸苷酰基转移酶(Glc-1-P TTase)同系物,具有 170 个残基长的额外 C 末端部分。对 ST0452 蛋白的功能分析已经证实,该蛋白具有双重糖-1-磷酸核苷转移酶(sugar-1-P NTase)活性。在 ST0452 蛋白的 C 末端检测到了细菌乙酰转移酶中发现的 24 个特征基序序列的重复(L/I/V)-(G/A/E/D)-XX-(S/T/A/V)-X。这一观察结果促使我们小组研究 ST0452 蛋白的乙酰转移酶活性。在 ST0452 蛋白存在的情况下,从乙酰辅酶 A 和葡萄糖胺-1-磷酸(GlcN-1-P)和 UTP 中检测到辅酶 A(CoA)的释放和 UDP-N-乙酰-d-葡萄糖胺(UDP-GlcNAc)的产生,表明该蛋白具有特异性的 GlcN-1-P 乙酰转移酶活性。此外,对底物特异性的分析表明,ST0452 蛋白的乙酰转移酶活性能够催化半乳糖胺-1-磷酸(GalN-1-P)向 N-乙酰-d-半乳糖胺-1-磷酸(GalNAc-1-P)以及 GlcN-1-P 的转化,其糖-1-P NTase 活性能够从 GalNAc-1-P 和 UTP 中产生 UDP-GalNAc。这是首例报道具有 GalN-1-P 乙酰转移酶和 GalNAc-1-P 尿苷转移酶活性的耐热双功能酶。这一观察结果表明,该古菌利用来自果糖-6-磷酸的细菌型 UDP-GlcNAc 生物合成途径,代表了该微生物中从 GalN-1-P 产生 UDP-GalNAc 的新生物合成途径。

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