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Crystal Structure of Cucumene Synthase, a Terpenoid Cyclase That Generates a Linear Triquinane Sesquiterpene

机译:黄蜡化合酶的晶体结构,萜类环状环化酶,产生线性iniquinane sesquiterpene

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摘要

Linear triquinanes are sesquiterpene natural products with hydrocarbon skeletons consisting of three fused five-membered rings. Importantly, several of these compounds exhibit useful anticancer, anti-inflammatory, and antibiotic properties. However, linear triquinanes pose significant challenges to organic synthesis because of the structural and stereochemical complexity of their hydrocarbon skeletons. To illuminate nature's solution to the generation of linear triquinanes, we now describe the crystal structure of Streptomyces clavuligerus cucumene synthase. This sesquiterpene cyclase catalyzes the stereospecific cyclization of farnesyl diphosphate to form a linear triquinane product, (5S,7S,10R,11S)-cucumene. Specifically, we report the structure of the wild-type enzyme at 3.05 angstrom resolution and the structure of the T181N variant at 1.96 angstrom resolution, both in the open active site conformations without any bound ligands. The high-resolution structure of T181N cucumene synthase enables inspection of the active site contour, which adopts a three-dimensional shape complementary to a linear triquinane. Several aromatic residues outline the active site contour and are believed to facilitate cation-pi interactions that would stabilize carbocation intermediates in catalysis. Thus, aromatic residues in the active site not only define the template for catalysis but also play a role in reducing activation barriers in the multistep cyclization cascade.
机译:线性交替是SesquiterPene天然产物,碳氢化合物骨架组成,包括三个熔融的五元环。重要的是,这些化合物中的几种表现出有用的抗癌,抗炎和抗生素性质。然而,由于其烃骨架的结构和立体化学复杂性,线性三丙烯酸蛋白对有机合成构成了重大挑战。为了照亮大自然的方法来产生线性三蛋白酶,我们现在描述了链霉菌Clavuligerus Clavuligerus Cucumene合酶的晶体结构。该SesquiterPene环酶催化法呢基二磷酸的立体尺寸环化以形成线性三氨基产物,(5s,7s,10r,11s)-cucumene。具体而言,我们在3.05埃·埃斯特罗姆分辨率下报告野生型酶的结构,并在1.96埃·埃斯特朗姆分辨率下,在没有任何结合配体的开放式有源部位构象中,T181N变体的结构。 T181N黄蜡淀粉的高分辨率结构能够检查活性位点轮廓,其采用与线性三丙烷互补的三维形状。几个芳族残留物概述活性位点轮廓,并且被认为促进阳离子-PI相互作用,该相互作用将在催化中稳定碳粉群中间体。因此,活性位点中的芳族残基不仅定义了催化模板,而且还在减少多步骤环化级联中的激活屏障中起作用。

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  • 来源
    《Biochemistry》 |2018年第44期|共10页
  • 作者单位

    Univ Penn Dept Chem Roy &

    Diana Vagelos Labs 231 South 34th St Philadelphia PA 19104 USA;

    Univ Penn Dept Chem Roy &

    Diana Vagelos Labs 231 South 34th St Philadelphia PA 19104 USA;

    Univ Utah Dept Chem 315 South 1400 East Salt Lake City UT 84112 USA;

    Univ Utah Dept Chem 315 South 1400 East Salt Lake City UT 84112 USA;

    Univ Penn Dept Chem Roy &

    Diana Vagelos Labs 231 South 34th St Philadelphia PA 19104 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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