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Structure of Epi-Isozizaene Synthase from Streptomyces coelicolor A3(2), a Platform for New Terpenoid Cyclization Templates

机译:来自链霉菌的ePI-异氮化酶合酶A3(2)的结构,是新萜类环形环化模板的平台

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The X-ray crystal structure of recombinant epi-isozizaene synthase (EIZS), a sesquiterpene cyclase from Streptomyces coelicolor A3(2), has been determined at 1.60 A resolution. Specifically, the structure of wild-type EIZS is that of its closed conformation in complex with three Mg2+ ions, inorganic pyrophosphate (PP,), and the benzyltriethylammonium cation (BTAC). Additionally, the structure of D99N EIZS has been determined in an open, ligand-free conformation at 1.90 A resolution. Comparison of these two structures provides the first view of conformational changes required for substrate binding and catalysis in a bacterial terpenoid cyclase. Moreover, the binding interactions of BTAC may mimic those of a carbocation intermediate in catalysis. Accordingly, the aromatic rings of F95, F96, and F198 appear to be well-oriented to stabilize carbocation intermediates in the cyclization cascade through cation-Jr interactions. Mutagenesis of aromatic residues in the enzyme active site results in the production of alternative sesquiterpene product arrays due to altered modes of stabilization of carbocation intermediates as well as altered templates for the cyclization of farnesyl diphosphate. Accordingly, the 1.64 A resolution crystal structure of F198A EIZS in a complex with three Mg + ions, PP;, and BTAC reveals an alternative binding orientation of BTAC; alternative binding orientations of a carbocation intermediate could lead to the formation of alternative products. Finally, the crystal structure of wild-type EIZS in a complex with four Hg2+ ions has been determined at 1.90 A resolution, showing that metal binding triggers a significant conformational change of helix G to cap the active site.
机译:重组ePI-异氮化酶合酶(eIZ)的X射线晶体结构,SISQITERPENE S3(2)的倍二萜环酶已经确定为1.60分辨率。具体地,野生型eIZ的结构是其封闭构象的络合物中与三个Mg 2 +离子,无机焦磷酸盐(PP,)和苄基三甲基铵(BTAC)的封闭构象。另外,在1.90分辨率下,已经确定了D99N EIZ的结构在1.90分辨率下确定。这两种结构的比较提供了在细菌三萜共环素中衬底结合和催化所需的构象变化的第一种视图。此外,BTAC的结合相互作用可以模拟催化中中间体的碳粉区分组中间体。因此,F95,F96和F198的芳环似乎是面向良好的,以稳定通过阳离子-JR相互作用在环化级联中的携带型级联中间体。酶活性部位中的芳族残基的诱变导致替代倍二萜产品阵列的制备,因为曲刚的碳酸型中间体的稳定模式以及芳呢铝二磷酸的环化的改变模板。因此,1.64在具有三毫克+离子的复合物中的F198a eiz的分辨率晶体结构,pp;,btac露出了BTAC的另一种结合取向;携带型碳粉群中间体的替代结合取向可能导致替代产品的形成。最后,已经在1.90分辨率下测定了具有四个Hg2 +离子的复合物中野生型eIZ的晶体结构,显示金属结合触发了螺旋g的显着构象变化以覆盖活性位点。

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