Structure and Function of Sabinene Synthase, a Monoterpene Cyclase That Generates a Highly Strained [3.1.0] Bicyclic Product.

IF 2.9 3区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Matthew N Gaynes, Kristin R Osika, David W Christianson
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引用次数: 0

Abstract

Sabinene is a plant natural product with a distinctive strained [3.1.0] bicyclic ring system that is used commercially as a spicy and pine-like fragrance with citrus undertones. This unusual monoterpene has also been studied as an antifungal and anti-inflammatory agent as well as a next-generation biofuel. In order to understand the molecular determinants of [3.1.0] bicyclic ring formation in sabinene biosynthesis, we now report three X-ray crystal structures of sabinene synthase from Western red cedar, Thuja plicata (TpSS), with open and partially closed active site conformations at 2.21-2.72 Å resolution. We additionally report the complete biochemical characterization of sabinene synthase, including steady-state kinetics, active site mutagenesis, and product array profiling. The catalytic metal ion requirement is unexpectedly broad for a class I terpene cyclase: optimal catalytic activity was measured using Mn2+ or Co2+, with more modest activity observed using Mg2+ or Ni2+. Kinetic parameters were determined for both full-length TpSS and a deletion variant lacking the putative N-terminal plastidial targeting sequence, designated ΔTpSS. Monoterpene product profiles for both indicated similar product arrays independent of the catalytic metal ion used, with sabinene comprising nearly 90% of the total products generated. Site-directed mutagenesis was utilized to probe the function of active site residues, and several mutants yielded altered product arrays. Most notably, the G458A substitution converted ΔTpSS into a high-activity α-pinene synthase. α-Pinene contains a bicyclic [3.1.1] ring system; structural and mechanistic analyses suggest a molecular rationale for the reprogrammed transannulation reaction, leading to the alternative bicyclic product.

桧烯合成酶的结构和功能--一种产生高强度 [3.1.0] 双环产物的单萜环化酶。
桧烯是一种植物天然产物,具有独特的链状[3.1.0]双环系统,在商业上被用作一种带有柑橘香味的辛辣松香。这种不寻常的单萜烯还被研究用作抗真菌剂、消炎剂和下一代生物燃料。为了了解在沙比烯生物合成过程中形成 [3.1.0] 双环的分子决定因素,我们现在以 2.21-2.72 Å 的分辨率报告了来自西部红雪松(Thuja plicata,TpSS)的沙比烯合成酶的三个 X 射线晶体结构,其中包括开放和部分封闭的活性位点构象。我们还报告了桧烯合成酶的完整生化特征,包括稳态动力学、活性位点突变和产物阵列分析。对于 I 类萜烯环化酶来说,催化金属离子的要求出乎意料地宽泛:使用 Mn2+ 或 Co2+ 测得了最佳催化活性,而使用 Mg2+ 或 Ni2+ 则观察到较低的活性。测定了全长 TpSS 和缺少 N 端质体靶向序列的缺失变体(命名为 ΔTpSS)的动力学参数。二者的单萜烯产物图谱均显示出相似的产物阵列,与所使用的催化金属离子无关,其中桧烯占所产生总产物的近 90%。利用定点突变来探究活性位点残基的功能,有几个突变体产生了改变的产物阵列。最值得注意的是,G458A 取代将 ΔTpSS 转化为高活性的 α-蒎烯合成酶。α-蒎烯含有一个双环[3.1.1]环系统;结构和机理分析表明了重编程转annulation 反应的分子原理,从而产生了替代的双环产物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Biochemistry Biochemistry
Biochemistry Biochemistry 生物-生化与分子生物学
CiteScore
5.50
自引率
3.40%
发文量
336
审稿时长
1-2 weeks
期刊介绍: Biochemistry provides an international forum for publishing exceptional, rigorous, high-impact research across all of biological chemistry. This broad scope includes studies on the chemical, physical, mechanistic, and/or structural basis of biological or cell function, and encompasses the fields of chemical biology, synthetic biology, disease biology, cell biology, nucleic acid biology, neuroscience, structural biology, and biophysics. In addition to traditional Research Articles, Biochemistry also publishes Communications, Viewpoints, and Perspectives, as well as From the Bench articles that report new methods of particular interest to the biological chemistry community.
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