Key Laboratory of Specialty Agri-product Quality and Hazard Controlling Technology of Zhejiang Province, College of Life Sciences, China Jiliang University, Hangzhou 310018, China.
Key Laboratory of Specialty Agri-product Quality and Hazard Controlling Technology of Zhejiang Province, College of Life Sciences, China Jiliang University, Hangzhou 310018, China.
Enzyme Microb Technol. 2022 Oct;160:110082. doi: 10.1016/j.enzmictec.2022.110082. Epub 2022 Jun 11.
The catalytic domain of family GH10 xylanase, XYN-LXY_CD derived from Hu sheep rumen microbiota was expressed in Pichia pastoris X33. The special activity of reXYN-LXY_CD in the culture supernatant was 232.56 U/mg. The optima of reXYN-LXY_CD were 53 °C and pH 7.0. Recombinant Oryza sativa xylanase inhibitor protein (rePOsXIP) competitively inhibited reXYN-LXY_CD with an inhibition constant (K) value of 237.37 nM. The concentration of hydrolysates released from beechwood xylan by reXYN-LXY_CD reduced when rePOsXIP was added into the hydrolytic system. Fluorescence of reXYN-LXY_CD was statically quenched by rePOsXIP in a dose-dependent manner. The details in intermolecular interaction between XYN-LXY_CD and OsXIP were investigated by using molecular dynamics (MD) simulations, binding free energy computation and non-covalent interactions (NCI) analysis. Hydrogen bonding and van der Waals played indispensable roles in the XYN-LXY_CD/OsXIP interaction. The α-7 helix of OsXIP tightly occupied the catalytic pocket of XYN-LXY_CD with hydrogen bonding such as K239-N261/Q292/E197 (E197, the acid-base catalytic residue), D236-K327 and Q242-E211/Q212. Based on the quantum theory of atoms in molecules (QTAIM), the Laplacian of electron density and core-valence bifurcation index of HZ3-OE2 were 0.1025 a.u. and 0.002218, respectively. Elucidating the mechanism underlying xylanase-inhibitor interactions might help construct XYN-LXY_CD mutants that gain resistance to XIPs and high catalytic activity, which would be more efficient in feed additives in livestock.
来自绵羊瘤胃微生物群的 GH10 木聚糖酶家族的催化结构域 XYN-LXY_CD 在巴斯德毕赤酵母 X33 中表达。在培养上清液中,reXYN-LXY_CD 的比活为 232.56 U/mg。reXYN-LXY_CD 的最适条件为 53°C 和 pH 7.0。重组水稻木聚糖酶抑制剂蛋白(rePOsXIP)竞争性抑制 reXYN-LXY_CD,抑制常数(K)值为 237.37 nM。当向水解体系中添加 rePOsXIP 时,reXYN-LXY_CD 从桦木木聚糖中释放的水解物浓度降低。rePOsXIP 以剂量依赖的方式使 reXYN-LXY_CD 的荧光发生静态猝灭。通过分子动力学(MD)模拟、结合自由能计算和非共价相互作用(NCI)分析,研究了 XYN-LXY_CD 和 OsXIP 之间分子间相互作用的细节。氢键和范德华力在 XYN-LXY_CD/OsXIP 相互作用中起着不可或缺的作用。OsXIP 的α-7 螺旋通过氢键(如 K239-N261/Q292/E197(酸碱催化残基)、D236-K327 和 Q242-E211/Q212)紧密占据 XYN-LXY_CD 的催化口袋。基于原子在分子中的量子理论(QTAIM),HZ3-OE2 的电子密度拉普拉斯和核-价态分叉指数分别为 0.1025 a.u.和 0.002218。阐明木聚糖酶-抑制剂相互作用的机制可能有助于构建对 XIPs 具有抗性和高催化活性的 XYN-LXY_CD 突变体,这将更有效地作为家畜饲料添加剂。