Evolutionary and Mechanistic Insights from the Reconstruction of α-Humulene Synthases from a Modern (+)-Germacrene A Synthase

被引:36
作者
Gonzalez, Veronica [1 ]
Touchet, Sabrina [1 ]
Grundy, Daniel J. [1 ]
Faraldos, Juan A. [1 ]
Allemann, Rudolf K. [1 ,2 ]
机构
[1] Cardiff Univ, Sch Chem, Cardiff CF10 3AT, S Glam, Wales
[2] Cardiff Univ, Sch Chem, Cardiff Catalysis Inst, Cardiff CF10 3AT, S Glam, Wales
基金
英国生物技术与生命科学研究理事会; 英国工程与自然科学研究理事会;
关键词
PRE-STEADY-STATE; ISOPRENOID-BIOSYNTHESIS; ARISTOLOCHENE SYNTHASE; CATALYZED CYCLIZATION; TRICHODIENE SYNTHASE; ARTEMISIA-ANNUA; SESQUITERPENE SYNTHASES; TERPENE BIOSYNTHESIS; FARNESYL DIPHOSPHATE; BACTERIAL EXPRESSION;
D O I
10.1021/ja5066366
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Germacrene A synthase (GAS) from Solidago canadensis catalyzes the conversion of farnesyl diphosphate (FDP) to the plant sesquiterpene (+)-germacrene A. After diphosphate expulsion, farnesyl cation reacts with the distal 10,11-double bond to afford germacrene A (>96%) and <2% alpha-humulene, which arises from 1,11-cyclization of FDP. The origin of the 1,11-activity of GAS was investigated by amino acid sequence alignments of 1,10- and 1,11-synthases and comparisons of X-ray crystal structures with the homology model of GAS; a triad [Thr 401-Gly 402-Gly 403] that might be responsible for the predominant 1,10-cyclization activity of GAS was identified. Replacement of Gly 402 with residues of increasing size led to a progressive increase of 1,11-cyclization. The catalytic robustness of these 1,10-/1,11-GAS variants point to Gly 402 as a functional switch of evolutionary significance and suggests that enzymes with strict functionalities have evolved from less specific ancestors through a small number of substitutions. Similar results were obtained with germacrene D synthase (GDS) upon replacement of the homologous active-site residue Gly 404: GDS-G404V generated approximately 20% bicyclogermacrene, a hydrocarbon with a cyclopropane ring that underlines the dual 1,10-/1,11-cyclization activity of this mutant. This suggests that the reaction pathways to germacrenes and humulenes might be connected through a bridged 1,10,11-carbocation intermediate or transition state that resembles bicyclogermacrene. Mechanistic studies using [1-H-3(1)]-10-fluorofarnesyl diphosphate and deuterium-labeling experiments with [12,13-H-2(6)]-FDP support a germacrene-humulene rearrangement linking 1,10- and 1,11-pathways. These results support the bioinformatics proposal that modern 1,10-synthases could have evolved from promiscuous 1,11-sesquiterpene synthases.
引用
收藏
页码:14505 / 14512
页数:8
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