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耻垢分枝杆菌海藻糖合酶:酶的纯化、克隆、表达及性质

Trehalose synthase of Mycobacterium smegmatis: purification, cloning, expression, and properties of the enzyme.

作者信息

Pan Yuan T, Koroth Edavana Vineetha, Jourdian William J, Edmondson Rick, Carroll J David, Pastuszak Irena, Elbein Alan D

机构信息

Department of Biochemistry and Molecular Biology, University of Arkansas for Medical Sciences, Little Rock, AR 72205, USA.

出版信息

Eur J Biochem. 2004 Nov;271(21):4259-69. doi: 10.1111/j.1432-1033.2004.04365.x.

Abstract

Trehalose synthase (TreS) catalyzes the reversible interconversion of trehalose (glucosyl-alpha,alpha-1,1-glucose) and maltose (glucosyl-alpha1-4-glucose). TreS was purified from the cytosol of Mycobacterium smegmatis to give a single protein band on SDS gels with a molecular mass of approximately 68 kDa. However, active enzyme exhibited a molecular mass of approximately 390 kDa by gel filtration suggesting that TreS is a hexamer of six identical subunits. Based on amino acid compositions of several peptides, the treS gene was identified in the M. smegmatis genome sequence, and was cloned and expressed in active form in Escherichia coli. The recombinant protein was synthesized with a (His)(6) tag at the amino terminus. The interconversion of trehalose and maltose by the purified TreS was studied at various concentrations of maltose or trehalose. At a maltose concentration of 0.5 mm, an equilibrium mixture containing equal amounts of trehalose and maltose (42-45% of each) was reached during an incubation of about 6 h, whereas at 2 mm maltose, it took about 22 h to reach the same equilibrium. However, when trehalose was the substrate at either 0.5 or 2 mm, only about 30% of the trehalose was converted to maltose in >or= 12 h, indicating that maltose is the preferred substrate. These incubations also produced up to 8-10% free glucose. The K(m) for maltose was approximately 10 mm, whereas for trehalose it was approximately 90 mm. While beta,beta-trehalose, isomaltose (alpha1,6-glucose disaccharide), kojibiose (alpha1,2) or cellobiose (beta1,4) were not substrates for TreS, nigerose (alpha1,3-glucose disaccharide) and alpha,beta-trehalose were utilized at 20 and 15%, respectively, as compared to maltose. The enzyme has a pH optimum of about 7 and is inhibited in a competitive manner by Tris buffer. [(3)H]Trehalose is converted to [(3)H]maltose even in the presence of a 100-fold or more excess of unlabeled maltose, and [(14)C]maltose produces [(14)C]trehalose in excess unlabeled trehalose, suggesting the possibility of separate binding sites for maltose and trehalose. The catalytic mechanism may involve scission of the incoming disaccharide and transfer of a glucose to an enzyme-bound glucose, as [(3)H]glucose incubated with TreS and either unlabeled maltose or trehalose results in formation of [(3)H]disaccharide. TreS also catalyzes production of a glucosamine disaccharide from maltose and glucosamine, suggesting that this enzyme may be valuable in carbohydrate synthetic chemistry.

摘要

海藻糖合酶(TreS)催化海藻糖(葡萄糖基-α,α-1,1-葡萄糖)和麦芽糖(葡萄糖基-α1-4-葡萄糖)之间的可逆相互转化。TreS从耻垢分枝杆菌的胞质溶胶中纯化出来,在SDS凝胶上呈现出一条单一的蛋白带,分子量约为68 kDa。然而,通过凝胶过滤法测定,活性酶的分子量约为390 kDa,这表明TreS是由六个相同亚基组成的六聚体。根据几种肽段的氨基酸组成,在耻垢分枝杆菌基因组序列中鉴定出treS基因,并将其克隆到大肠杆菌中并以活性形式表达。重组蛋白在氨基末端带有一个(His)6标签。在不同浓度的麦芽糖或海藻糖条件下,研究了纯化的TreS对海藻糖和麦芽糖的相互转化作用。在麦芽糖浓度为0.5 mM时,在大约6小时的孵育过程中达到了含有等量海藻糖和麦芽糖(各占42 - 45%)的平衡混合物,而在麦芽糖浓度为2 mM时,达到相同平衡则需要约22小时。然而,当以海藻糖为底物,浓度为0.5 mM或2 mM时,在≥12小时内只有约30%的海藻糖转化为麦芽糖,这表明麦芽糖是更优的底物。这些孵育过程还产生了高达8 - 10%的游离葡萄糖。麦芽糖的K(m)约为10 mM,而海藻糖的K(m)约为90 mM。虽然β,β-海藻糖、异麦芽糖(α1,6-葡萄糖二糖)、曲二糖(α1,2)或纤维二糖(β1,4)不是TreS的底物,但与麦芽糖相比,黑曲霉糖(α1,3-葡萄糖二糖)和α,β-海藻糖分别有20%和15%被利用。该酶的最适pH约为7,并且受到Tris缓冲液的竞争性抑制。即使存在100倍或更多过量的未标记麦芽糖,[(3)H]海藻糖仍会转化为[(3)H]麦芽糖,并且[(14)C]麦芽糖在过量未标记海藻糖存在时会产生[(14)C]海藻糖,这表明麦芽糖和海藻糖可能有各自独立的结合位点。催化机制可能涉及进入的二糖的断裂以及一个葡萄糖转移到与酶结合的葡萄糖上,因为与TreS一起孵育的[(3)H]葡萄糖和未标记的麦芽糖或海藻糖会导致[(3)H]二糖的形成。TreS还催化由麦芽糖和葡糖胺生成葡糖胺二糖,这表明该酶在碳水化合物合成化学中可能具有重要价值。

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