Juge Nathalie, Nøhr Jane, Le Gal-Coëffet Marie-Françoise, Kramhøft Birte, Furniss Caroline S M, Planchot Véronique, Archer David B, Williamson Gary, Svensson Birte
Institute of Food Research, Norwich Research Park, Colney, Norwich, NR4 7UA, UK.
Biochim Biophys Acta. 2006 Feb;1764(2):275-84. doi: 10.1016/j.bbapap.2005.11.008. Epub 2005 Dec 19.
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.
某些淀粉分解酶对淀粉颗粒的高亲和力是由一个单独的淀粉结合域(SBD)介导的。在黑曲霉葡糖淀粉酶(GA-I)中,一个70个氨基酸的O-糖基化肽接头将SBD与催化域相连。构建了一个基因,用于编码通过37个残基的GA-I接头片段在C末端与该SBD融合的大麦α-淀粉酶1(AMY1)。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,由正确加工的N末端多种形式组成,等电点范围为4.1-5.2。AMY1-SBD(50 nM)对大麦淀粉颗粒的活性和表观亲和力分别为0.034 U x nmol(-1) 和K(d) = 0.13 mg x mL(-1),相对于在黑曲霉中产生的重组AMY1(rAMY1)的0.015 U x nmol(-1) 和0.67 mg x mL(-1) 值均有所提高。AMY1-SBD在低浓度(0.5%)但不是高浓度(1%)下对可溶性淀粉的活性增加了2倍。与rAMY1的1.9相比,AMY1-SBD水解直链淀粉DP440的多重攻击程度增加到3。值得注意的是,在低浓度(2 nM)下,AMY1-SBD水解大麦淀粉颗粒的速度比rAMY1快15倍,而更高量的AMY-SBD会导致淀粉颗粒表面分子过度拥挤。