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黑曲霉 GH10 木聚糖酶 A 生成的桦木木聚糖低聚木糖的抗氧化能力及水稻 XIP 对该酶的竞争性抑制作用

Antioxidant capacity of xylooligosaccharides generated from beechwood xylan by recombinant family GH10 Aspergillus niger xylanase A and insights into the enzyme's competitive inhibition by riceXIP.

机构信息

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.

出版信息

Enzyme Microb Technol. 2024 Sep;179:110456. doi: 10.1016/j.enzmictec.2024.110456. Epub 2024 May 12.

Abstract

In this study, the family GH10 xylanase AnXylA10 derived from Aspergillus niger JL15 strain was expressed in Pichia pastoris X33. The recombinant xylanase, reAnXylA10 exhibited optimal activity at 40 ℃ and pH 5.0. The hydrolysates generated from beechwood xylan using reAnXylA10 primarily consisted of xylobiose (X2) to xylohexaose (X6) and demonstrated remarkable antioxidant capacity. Furthermore, the rice xylanase inhibitory protein (riceXIP) was observed to competitively inhibit reAnXylA10, exhibiting an inhibition constant (K) of 140.6 nM. Molecular dynamics (MD) simulations of AnXylA10-riceXIP complex revealed that the α-7 helix (Q225-S238) of riceXIP intruded into the catalytic pocket of AnXylA10, thereby obstructing substrate access to the active site. Specifically, residue K226 of riceXIP formed robust interactions with E136 and E242, the two catalytic sites of AnXylA10, predominantly through high-occupied hydrogen bonds. Based on QTAIM, electron densities for the atom pairs K226@HZ1-E136@OE2 and K226@HZ3-E242@OE1 were determined to be 0.04628 and 0.02914 a.u., respectively. Binding free energy of AnXylA10-riceXIP complex was -59.0±7.6 kcal/mol, significantly driven by electrostatic and van der Waals forces. Gaining insights into the interaction between xylanase and its inhibitors, and mining the inhibition mechanism in depth, will facilitate the design of innovative GH10 family xylanases that are both highly efficient and resistant to inhibitors.

摘要

在这项研究中,来源于黑曲霉 JL15 菌株的家族 GH10 木聚糖酶 AnXylA10 在毕赤酵母 X33 中表达。重组木聚糖酶 reAnXylA10 在 40℃和 pH5.0 下表现出最佳活性。使用 reAnXylA10 从山毛榉木聚糖生成的水解产物主要由木二糖 (X2) 至木六糖 (X6) 组成,并表现出显著的抗氧化能力。此外,发现水稻木聚糖酶抑制蛋白 (riceXIP) 竞争性抑制 reAnXylA10,其抑制常数 (K) 为 140.6nM。AnXylA10-riceXIP 复合物的分子动力学 (MD) 模拟表明,riceXIP 的 α-7 螺旋 (Q225-S238) 侵入 AnXylA10 的催化口袋,从而阻止底物进入活性位点。具体而言,riceXIP 的残基 K226 与 AnXylA10 的两个催化位点 E136 和 E242 形成了强相互作用,主要通过高占据氢键。基于 QTAIM,确定了原子对 K226@HZ1-E136@OE2 和 K226@HZ3-E242@OE1 的电子密度分别为 0.04628 和 0.02914a.u.。AnXylA10-riceXIP 复合物的结合自由能为-59.0±7.6kcal/mol,主要由静电和范德华力驱动。深入了解木聚糖酶与其抑制剂之间的相互作用,并深入挖掘抑制机制,将有助于设计出高效且能抵抗抑制剂的新型 GH10 家族木聚糖酶。

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