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来自普通嗜热放线菌R-47的两种支链淀粉水解α-淀粉酶TVA I和TVA II的一级结构及底物特异性比较

Comparison of primary structures and substrate specificities of two pullulan-hydrolyzing alpha-amylases, TVA I and TVA II, from Thermoactinomyces vulgaris R-47.

作者信息

Tonozuka T, Mogi S, Shimura Y, Ibuka A, Sakai H, Matsuzawa H, Sakano Y, Ohta T

机构信息

Department of Biotechnology, University of Tokyo, Japan.

出版信息

Biochim Biophys Acta. 1995 Sep 27;1252(1):35-42. doi: 10.1016/0167-4838(95)00101-y.

Abstract

Thermoactinomyces vulgaris R-47 produces two alpha-amylases, TVA I, an extracellular enzyme, and TVA II, an intracellular enzyme. Both enzymes hydrolyze pullulan to produce panose, and also hydrolyze cyclodextrins. We cloned and sequenced the TVA I gene. The TVA I gene consisted of 1833 base pairs, and the deduced primary structure was composed of 611 amino-acid residues, including an N-terminal signal sequence consisting of 29 amino-acid residues. The similarity between the amino-acid sequence of mature TVA I with those of other pullulan/cyclodextrin-hydrolyzing enzymes, such as TVA II and Bacillus stearothermophilus neopullulanase, was only 30%, although that of TVA II with neopullulanase was 48%. TVA II prefers specific small oligosaccharides and alpha- and beta-cyclodextrins. Whereas kcat/Km values of TVA I for pullulan were larger than that of TVA II, and TVA II could not hydrolyze starch completely. TVA II was inhibited by maltose, the hydrolysate of starch, which seems to be the reason for inefficient hydrolysis of starch. These kinetic properties indicate that TVA I and TVA II have differential physiological roles in sugar metabolism extracellularly and intracellularly, respectively.

摘要

普通嗜热放线菌R-47产生两种α-淀粉酶,即胞外酶TVA I和胞内酶TVA II。这两种酶都能水解支链淀粉产生潘糖,也能水解环糊精。我们克隆并测序了TVA I基因。TVA I基因由1833个碱基对组成,推导的一级结构由611个氨基酸残基组成,包括一个由29个氨基酸残基组成的N端信号序列。成熟TVA I的氨基酸序列与其他支链淀粉/环糊精水解酶(如TVA II和嗜热栖热放线菌新支链淀粉酶)的氨基酸序列相似性仅为30%,而TVA II与新支链淀粉酶的相似性为48%。TVA II更喜欢特定的小寡糖以及α-和β-环糊精。虽然TVA I对支链淀粉的kcat/Km值大于TVA II,且TVA II不能完全水解淀粉。TVA II受到淀粉水解产物麦芽糖的抑制,这似乎是淀粉水解效率低下的原因。这些动力学特性表明,TVA I和TVA II在糖代谢中分别在细胞外和细胞内具有不同的生理作用。

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