State Key Laboratory of Food Science and Technology, Nanchang University, No. 235 Nanjing East Road, Nanchang 330047, China.
College of Bioengineering and Food, Hubei University of Technology, Wuhan 430068, China.
Int J Biol Macromol. 2018 Jul 1;113:427-433. doi: 10.1016/j.ijbiomac.2018.01.189. Epub 2018 Jan 31.
Procyanidins were reported to have an inhibitory effect on α-amylase, but the interaction mechanism between procyanidins and α-amylase was rarely reported. Spectroscopic and molecular docking techniques were utilized to explore the interaction between porcine pancreatic α-amylase (PPA) and B-type procyanidin dimer (PB2). PB2 decreased the intrinsic fluorescence and surface hydrophobicity of PPA, indicating that an interaction occurred and complex formed. The binding process of complex was spontaneous and the main interaction was hydrophobic force. Circular dichroism showed conformational changes of PPA with an increasing of α-helix and β-sheet structure. Molecular docking speculated that PB2 could form hydrophobic force with PPA by bind to the active sit (Asp 167, Asn 100, Arg 158, His 201). This research can offer new insights into the mechanism of PB2 in inhibiting PPA catalysis and provide useful information on dietary recommendation of PB2 for the treatment of type 2 diabetes.
原花青素被报道对α-淀粉酶具有抑制作用,但原花青素与α-淀粉酶之间的相互作用机制很少有报道。本研究采用光谱和分子对接技术探讨了猪胰腺α-淀粉酶(PPA)与 B 型原花青素二聚体(PB2)之间的相互作用。PB2 降低了 PPA 的内源荧光和表面疏水性,表明发生了相互作用并形成了复合物。复合物的结合过程是自发的,主要相互作用是疏水相互作用。圆二色谱表明 PPA 的构象发生变化,α-螺旋和β-折叠结构增加。分子对接推测 PB2 可以通过与活性位点(Asp167、Asn100、Arg158、His201)结合,形成与 PPA 的疏水相互作用。本研究可以为 PB2 抑制 PPA 催化的机制提供新的见解,并为 PB2 作为治疗 2 型糖尿病的饮食推荐提供有用的信息。