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首页> 外文期刊>Biochimica et biophysica acta: BBA: International journal of biochemistry, biophysics and molecular biololgy. Proteins and Proteomics >The activity of barley alpha-amylase on starch granules is enhanced by fusion of a starch binding domain from Aspergillus niger glucoamylase
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The activity of barley alpha-amylase on starch granules is enhanced by fusion of a starch binding domain from Aspergillus niger glucoamylase

机译:大麦α-淀粉酶对淀粉颗粒的活性通过黑曲霉葡糖淀粉酶的淀粉结合域的融合而增强

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摘要

High affinity for starch granules of certain amylolytic enzymes is mediated by a separate starch binding domain (SBD). In Aspergillus niger glucoamylase (GA-I), a 70 amino acid O-glycosylated peptide linker connects SBD with the catalytic domain. A gene was constructed to encode barley alpha-amylase 1 (AMY1) fused C-terminally to this SBD via a 37 residue GA-I linker segment. AMY1-SBD was expressed in A. niger, secreted using the AMY1 signal sequence at 25 mg x L-1 and purified in 50% yield. AMY1-SBD contained 23% carbohydrate and consisted of correctly N-terminally processed multiple forms of isoelectric points in the range 4.1-5.2. Activity and apparent affinity of AMY1-SBD (50 nM) for barley starch granules of 0.034 U x nmol(-1) and K-d = 0.13 mg x mL(-1), respectively, were both improved with respect to the values 0.015 U x nmol(-1) and 0.67 mg x mL(-1) for rAMY1 (recombinant AMY1 produced in A. niger). AMY1-SBD showed a 2-fold increased activity for soluble starch at low (0.5%) but not at high (1%) concentration. AMY1-SBD hydrolysed amylose DP440 with an increased degree of multiple attack of 3 compared to 1.9 for rAMY1. Remarkably, at low concentration (2 nM), AMY1-SBD hydrolysed barley starch granules 15-fold faster than rAMY1, while higher amounts of AMY-SBD caused molecular overcrowding of the starch granule surface. (c) 2005 Elsevier B.V. All rights reserved.
机译:对某些淀粉分解酶的淀粉颗粒的高亲和力是由单独的淀粉结合域(SBD)介导的。在黑曲霉葡糖淀粉酶(GA-1)中,一个70个氨基酸的O-糖基化肽接头将SBD与催化结构域连接。构建一个基因来编码大麦α-淀粉酶1(AMY1),该大麦α-淀粉酶1通过37个残基的GA-I接头片段与该SBD C端融合。 AMY1-SBD在黑曲霉中表达,使用AMY1信号序列以25 mg x L-1的浓度分泌,并以50%的产率纯化。 AMY1-SBD含有23%的碳水化合物,由在4.1-5.2范围内经过N末端正确处理的多种形式的等电点组成。 AMY1-SBD(50 nM)分别对0.034 U x nmol(-1)和Kd = 0.13 mg x mL(-1)的大麦淀粉颗粒的活性和表观亲和力均相对于0.015 U x有所提高nmol(-1)和0.67 mg x mL(-1)用于rAMY1(在黑曲霉中产生的重组AMY1)。 AMY1-SBD在低浓度(0.5%)时对可溶性淀粉的活性增加了2倍,而在高浓度(1%)时却没有。与rAMY1的1.9相比,AMY1-SBD水解的直链淀粉DP440的多重攻击度提高了3。值得注意的是,在低浓度(2 nM)下,AMY1-SBD水解的大麦淀粉颗粒比rAMY1快15倍,而较高量的AMY-SBD引起淀粉颗粒表面的分子过度拥挤。 (c)2005 Elsevier B.V.保留所有权利。

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