Plant Tissue Culture Division, National Chemical Laboratory, Dr. Homi Bhabha Road, Pune, 411008, India.
Mol Biol Rep. 2013 Feb;40(2):1351-63. doi: 10.1007/s11033-012-2179-6. Epub 2012 Oct 19.
Glycosyl hydrolase family 1 β-glucosidases are important enzymes that serve many diverse functions in plants including defense, whereby hydrolyzing the defensive compounds such as hydroxynitrile glucosides. A hydroxynitrile glucoside cleaving β-glucosidase gene (Llbglu1) was isolated from Leucaena leucocephala, cloned into pET-28a (+) and expressed in E. coli BL21 (DE3) cells. The recombinant enzyme was purified by Ni-NTA affinity chromatography. The optimal temperature and pH for this β-glucosidase were found to be 45 °C and 4.8, respectively. The purified Llbglu1 enzyme hydrolyzed the synthetic glycosides, pNPGlucoside (pNPGlc) and pNPGalactoside (pNPGal). Also, the enzyme hydrolyzed amygdalin, a hydroxynitrile glycoside and a few of the tested flavonoid and isoflavonoid glucosides. The kinetic parameters K (m) and V (max) were found to be 38.59 μM and 0.8237 μM/mg/min for pNPGlc, whereas for pNPGal the values were observed as 1845 μM and 0.1037 μM/mg/min. In the present study, a three dimensional (3D) model of the Llbglu1 was built by MODELLER software to find out the substrate binding sites and the quality of the model was examined using the program PROCHEK. Docking studies indicated that conserved active site residues are Glu 199, Glu 413, His 153, Asn 198, Val 270, Asn 340, and Trp 462. Docking of rhodiocyanoside A with the modeled Llbglu1 resulted in a binding with free energy change (ΔG) of -5.52 kcal/mol on which basis rhodiocyanoside A could be considered as a potential substrate.
糖苷水解酶家族 1β-葡萄糖苷酶是在植物中具有许多不同功能的重要酶,包括防御功能,通过水解防御化合物如羟腈糖苷。从银合欢中分离出一种羟腈糖苷裂解β-葡萄糖苷酶基因(Llbglu1),将其克隆到 pET-28a(+)中,并在大肠杆菌 BL21(DE3)细胞中表达。通过 Ni-NTA 亲和层析纯化重组酶。发现该β-葡萄糖苷酶的最适温度和 pH 分别为 45°C 和 4.8。纯化的 Llbglu1 酶水解合成糖苷 pNPGlucoside(pNPGlc)和 pNPGalactoside(pNPGal)。此外,该酶还水解苦杏仁苷,一种羟腈糖苷和一些测试的类黄酮和异黄酮糖苷。发现 pNPGlc 的 K(m)和 V(max)动力学参数分别为 38.59 μM 和 0.8237 μM/mg/min,而 pNPGal 的值分别为 1845 μM 和 0.1037 μM/mg/min。在本研究中,通过 MODELLER 软件构建了 Llbglu1 的三维(3D)模型,以找出底物结合位点,并使用 PROCHEK 程序检查模型的质量。对接研究表明,保守的活性位点残基为 Glu199、Glu413、His153、Asn198、Val270、Asn340 和 Trp462。将 rhodiocyanoside A 与建模的 Llbglu1 对接,导致结合自由能变化(ΔG)为-5.52 kcal/mol,据此可以认为 rhodiocyanoside A 是一种潜在的底物。