通过聚焦极性突变扫描增强铱合成酶的底物偏好性

Huifen Yu, Cuifang Ye, Yong Wang, Zhe Wang, Sai Fang, Huanhuan Jin, Lirong Yang, Wenlong Zheng* and Jianping Wu*, 
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引用次数: 0

摘要

内皮内酯是大多数虹彩类化合物的支架,具有广泛的生物和药理活性。铱合成酶(ISY)在体内从 8-oxogeranial 合成内酯内酯的过程中起着至关重要的作用。然而,ISY 的底物杂合性可能导致通量偏离目标路线。在这项工作中,通过定向进化改善了 ISY 对尼泊内酯的底物偏好(SP,8-氧代香叶醇与香叶醇的活性比)。首先,以Nepeta mussinii的NmISY2为对象,采用聚焦极性诱变扫描(FPSMS)策略构建了一个小型突变体库。四个具有不同极性和立体阻碍的氨基酸残基(包括丙氨酸、天冬氨酸、丝氨酸和精氨酸)被纳入扫描热点。结果发现,W109、M217、K343 和 W345 四个位点对 NmISY2 的底物偏好有显著影响。然后,通过组合活性位点饱和度测试/迭代饱和度诱变(CAST/ISM)策略将这四个位点组合起来。结果得到了突变体 W345D/K343M/W109Y(3M+),其 6 的 SP 值从 8.5 显著增加到 293.1。分子动力学模拟显示,底物隧道的立体阻碍和极性对 NmISY2 的 SP 值起着关键作用。值得注意的是,将 3M+ 整合到 Pichia pastoris 后,6 的从头滴度增加了 24.9 倍,达到 15.8 mg/L。这项研究为改善酶的底物偏好提供了一种战略方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhancing Substrate Preference of Iridoid Synthase via Focused Polarity-Steric Mutagenesis Scanning

Nepetalactol serves as the scaffold for most iridoids, which exhibit a wide range of biological and pharmacological activities. Iridoid synthase (ISY) plays a crucial role in the in vivo synthesis of nepetalactol from 8-oxogeranial. However, the substrate promiscuity of ISY could result in a deviation of flux toward off-target routes. In this work, the substrate preference (SP, the ratio of activity for 8-oxogeranial to geranial) of ISY for nepetalactol was improved by directed evolution. First, the strategy of focused polarity-steric mutagenesis scanning (FPSMS) was performed to construct a small mutant library with NmISY2 from Nepeta mussinii as an object. Four amino acid residues with varying polarity and steric hindrance, including alanine, aspartic acid, serine, and arginine, were incorporated to scan hot spots. Consequently, four sites of W109, M217, K343, and W345 with a significant impact on the substrate preference of NmISY2 were found. Then, the four sites were combined by a combinatorial active-site saturation test/iterative saturation mutagenesis (CAST/ISM) strategy. As a result, the mutant W345D/K343M/W109Y (3M+) was obtained with a significantly increased SP value for 6 from 8.5 to 293.1. Molecular dynamics simulations revealed that the steric hindrance and polarity of the substrate tunnel played pivotal roles in the SP value of NmISY2. Notably, upon integration of 3M+ into Pichia pastoris, the de novo titer of 6 increased by 24.9 times, reaching 15.8 mg/L. This study offers a strategic approach to improving the substrate preference of enzymes.

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