State Key Laboratory of Bioreactor Engineering, East China University of Science and Technology, Shanghai, 200237, China.
Shanghai Yaxin Biotechnology Limited Company, Shanghai, 200231, China.
Appl Biochem Biotechnol. 2020 Jul;191(3):1207-1222. doi: 10.1007/s12010-020-03254-5. Epub 2020 Feb 1.
Soybean Kunitz trypsin inhibitor (SKTI), extracted from soybean (Glycine max L.) seeds, possesses insect resistance and anti-tumor properties. But its specific mechanisms of action are not yet known. This article reports an efficient method to produce recombinant SKTI (rSKTI) in Escherichia coli, reveals some biochemical properties of rSKTI, and discusses the inhibition mechanism of SKTI. The rSKTI was expressed as inclusion body in E. coli BL21 (DE3). After refolding, the active rSKTI was obtained and was further purified with anion-exchange chromatography (DEAE-FF) efficiently. There were similar biochemical properties between SKTI and rSKTI. The optimum pH and the optimum temperature were pH 8.0 and 35 °C, respectively, being stable during pH 7.0-11.0 and below 37 °C. The activity against trypsin was inhibited by Co, Mn, Fe, Al, and epoxy chloropropane. Inhibition kinetic assay of SKTI against trypsin as Lineweaver-Burk plots analysis both showed an unchanged K and a decreased V with N-benzoyl-L-arginine ethyl ester (BAEE) as substrate. Molecular modeling showed Arg63 of SKTI (active residue of SKTI) that interacts with four residues of trypsin, including three catalytic site (His57, Asp102, and Ser195) and one binding site (Asp189), forming five interactions. These provide reference for understanding the inhibition mechanism of such kind of Kunitz trypsin inhibitors.
大豆 Kunitz 胰蛋白酶抑制剂(SKTI)从大豆(Glycine max L.)种子中提取,具有抗虫和抗肿瘤特性。但其具体作用机制尚不清楚。本文报道了在大肠杆菌中高效生产重组 SKTI(rSKTI)的方法,揭示了 rSKTI 的一些生化性质,并讨论了 SKTI 的抑制机制。rSKTI 在大肠杆菌 BL21(DE3)中以包涵体形式表达。复性后,得到有活性的 rSKTI,并进一步通过阴离子交换层析(DEAE-FF)有效地进行了纯化。SKTI 和 rSKTI 具有相似的生化性质。最适 pH 和最适温度分别为 pH 8.0 和 35°C,在 pH 7.0-11.0 和低于 37°C 时稳定。Co、Mn、Fe、Al 和环氧氯丙烷对胰蛋白酶的活性有抑制作用。SKTI 对胰蛋白酶的抑制动力学分析均为 Lineweaver-Burk 图谱分析,均显示以 N-苯甲酰-L-精氨酸乙酯(BAEE)为底物时 K 不变,V 降低。分子建模显示 SKTI 的 Arg63(SKTI 的活性残基)与胰蛋白酶的四个残基相互作用,包括三个催化位点(His57、Asp102 和 Ser195)和一个结合位点(Asp189),形成五个相互作用。这些为理解此类 Kunitz 胰蛋白酶抑制剂的抑制机制提供了参考。