Ngoh Ying-Yuan, Lim Theam Soon, Gan Chee-Yuen
Analytical Biochemistry Research Centre, Universiti Sains Malaysia, 11800 Penang, Malaysia.
Institute for Research in Molecular Medicine, Universiti Sains Malaysia, 11800 Penang, Malaysia.
Enzyme Microb Technol. 2016 Jul;89:76-84. doi: 10.1016/j.enzmictec.2016.04.001. Epub 2016 Apr 4.
The objective of this study was to screen and identify α-amylase inhibitor peptides from Pinto bean. Five Pinto bean bioactive peptides were successfully identified: PPHMLP (P1), PLPWGAGF (P3), PPHMGGP (P6), PLPLHMLP (P7) and LSSLEMGSLGALFVCM (P9). Based on ELISA results, their promising optical density values were 1.27; 3.71, 1.67, 3.20 and 1.03, respectively, which indicated the binding interaction between the peptide and α-amylase occurred. The highest inhibitory activity (66.72%) of the chemically synthesized peptide was shown in SyP9 followed by SyP1 (48.86%), SyP3 (31.17%), SyP7 (27.88%) and SyP6 (23.96%). The IC50 values were 1.97, 8.96, 14.63, 18.45 and 20.56mgml(-1), respectively. Structure activity relationship study revealed that α-amylase was inhibited due to its residues of Ala230, Asp229, Asp326, Tyr54, Met195, Leu194 and His233 were bound. On the other hand, the residues of PBBP (i.e. histidine, proline and methionine) were found to have the highest potency in the binding interaction.
本研究的目的是从斑豆中筛选和鉴定α-淀粉酶抑制肽。成功鉴定出5种斑豆生物活性肽:PPHMLP(P1)、PLPWGAGF(P3)、PPHMGGP(P6)、PLPLHMLP(P7)和LSSLEMGSLGALFVCM(P9)。基于酶联免疫吸附测定(ELISA)结果,它们的吸光度值分别为1.27、3.71、1.67、3.20和1.03,表明肽与α-淀粉酶之间发生了结合相互作用。化学合成肽中,SyP9的抑制活性最高(66.72%),其次是SyP1(48.86%)、SyP3(31.17%)、SyP7(27.88%)和SyP6(23.96%)。半数抑制浓度(IC50)值分别为1.97、8.96、14.63、18.45和20.56mg/ml。构效关系研究表明,α-淀粉酶受到抑制是因为其Ala230、Asp229、Asp326、Tyr54、Met195、Leu194和His233残基发生了结合。另一方面,发现斑豆生物活性肽(PBBP)的残基(即组氨酸、脯氨酸和蛋氨酸)在结合相互作用中具有最高效力。