Nano-Science Center, Department of Chemistry, University of Copenhagen, Universitetsparken 5, DK-2100 Copenhagen Ø, Denmark.
Arch Biochem Biophys. 2012 Dec 1;528(1):1-6. doi: 10.1016/j.abb.2012.08.005. Epub 2012 Aug 17.
Barley α-amylase isozyme 1 (AMY1, EC 3.2.1.1) contains two surface binding sites, SBS1 and SBS2, involved in the degradation of starch granules. The distinct role of SBS1 and SBS2 remains to be fully understood. Mutational analysis of Tyr-380 situated at SBS2 previously revealed that Tyr-380 is required for binding of the amylose helix mimic, β-cyclodextrin. Also, mutant enzymes altered at position 380 displayed reduced binding to starch granules. Similarly, binding of wild type AMY1 to starch granules was suppressed in the presence of β-cyclodextrin. We investigated the role of SBS2 by comparing kinetic properties of the wild type AMY1 and the Y380A mutant enzyme in hydrolysis of amylopectin, amylose and β-limit dextrin, and the inhibition by β-cyclodextrin. Progress curves of the release of reducing ends revealed a bi-exponential hydrolysis of amylopectin and β-limit dextrin, whereas hydrolysis of amylose progressed mono-exponentially. β-Cyclodextrin, however, inhibited only one of the two reaction rates of amylopectin and β-limit dextrin hydrolysis, whereas hydrolysis of amylose was unaffected. The Y380A enzyme showed no detectable inhibition by β-cyclodextrin but displayed similar kinetics to the inhibited wild type AMY1. These results point to SBS2 as an important binding site in amylopectin depolymerization.
大麦 α-淀粉酶同工酶 1(AMY1,EC 3.2.1.1)包含两个表面结合位点 SBS1 和 SBS2,参与淀粉颗粒的降解。SBS1 和 SBS2 的独特作用仍有待充分理解。先前对位于 SBS2 的 Tyr-380 的突变分析表明,Tyr-380 是结合淀粉直链模拟物 β-环糊精所必需的。此外,位置 380 发生突变的突变酶显示与淀粉颗粒的结合减少。同样,在 β-环糊精存在的情况下,野生型 AMY1 与淀粉颗粒的结合受到抑制。我们通过比较野生型 AMY1 和 Y380A 突变酶在支链淀粉、直链淀粉和 β-极限糊精水解中的动力学特性,以及 β-环糊精的抑制作用,研究了 SBS2 的作用。还原端释放的进展曲线揭示了支链淀粉和 β-极限糊精的双指数水解,而直链淀粉的水解则呈单指数。然而,β-环糊精仅抑制支链淀粉和 β-极限糊精水解的两个反应速率之一,而直链淀粉的水解不受影响。Y380A 酶未检测到 β-环糊精的抑制作用,但表现出与受抑制的野生型 AMY1 相似的动力学。这些结果表明 SBS2 是支链淀粉解聚的一个重要结合位点。