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Insights into Diterpene Cyclization from Structure of Bifunctional Abietadiene Synthase from Abies grandis

机译:从Abie Grandis的双官能腺苷合酶结构中洞察分层循环

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摘要

Abietadiene synthase from Abies grandis (AgAS) is a model system for diterpene synthase activity, catalyzing class I (ionization-initiated) and class II (protonation-initiated) cyclization reactions. Reported here is the crystal structure of AgAS at 2.3 Å resolution and molecular dynamics simulations of that structure with and without active site ligands. AgAS has three domains (α, β, and γ). The class I active site is within the C-terminal α domain, and the class II active site is between the N-terminal γ and β domains. The domain organization resembles that of monofunctional diterpene synthases and is consistent with proposed evolutionary origins of terpene synthases. Molecular dynamics simulations were carried out to determine the effect of substrate binding on enzymatic structure. Although such studies of the class I active site do lead to an enclosed substrate-Mg2+ complex similar to that observed in crystal structures of related plant enzymes, it does not enforce a single substrate conformation consistent with the known product stereochemistry. Simulations of the class II active site were more informative, with observation of a well ordered external loop migration. This “loop-in” conformation not only limits solvent access but also greatly increases the number of conformational states accessible to the substrate while destabilizing the nonproductive substrate conformation present in the “loop-out” conformation. Moreover, these conformational changes at the class II active site drive the substrate toward the proposed transition state. Docked substrate complexes were further assessed with regard to the effects of site-directed mutations on class I and II activities.
机译:来自Apies Grandis(AGAs)的阿比替烯合成酶是二萜合酶活性的模型系统,催化I类(电离引发)和II类(质子化引发)的环化反应。这里报道的是agas的晶体结构在2.3Å的分辨率和具有和没有活性位点配体的结构的分辨率和分子动力学模拟。 AGA有三个域(α,β和γ)。 I类活动站点位于C末端α域内,II类有源站点位于N末端γ和β结构域之间。结构域组织类似于单官能二萜合酶,与萜烯合成酶的提出的进化起源一致。进行分子动力学模拟以确定底物结合对酶促结构的影响。虽然I类活性位点的这种研究可以导致类似于在相关植物酶的晶体结构中观察到的封闭基板-Mg2 +复合物,但是它不强制与已知产品立体化学一致的单个衬底构象。 II类活跃网站的模拟更有信息,观察到一个有序的外环迁移。这种“环 - in-in”构象不仅限制溶剂通道,而且大大增加了基板可访问的构象状态的数量,同时破坏了在“环路”构象中存在的非生产基板构象。此外,II类主动部位的这些构象变化驱动基板朝向所提出的过渡状态。关于在I类和II类活动中的存在点定向突变的影响,进一步评估停靠的底物复合物。

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