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首页> 外文期刊>Journal of Plant Research >Molecular cloning and biochemical characterization of isoprene synthases from the tropical trees Ficus virgata, Ficus septica, and Casuarina equisetifolia
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Molecular cloning and biochemical characterization of isoprene synthases from the tropical trees Ficus virgata, Ficus septica, and Casuarina equisetifolia

机译:热带树木榕榕,败血榕和木麻黄的异戊二烯合酶的分子克隆和生化特性

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Three isoprene synthase (IspS) cDNA clones have been isolated from tropical trees (Ficus septica, F. virgata, and Casuarina equisetifolia), and their enzyme properties have been compared with those of Populus alba IspS. Phylogenetic analysis of the deduced amino acid sequences with known monoterpene synthase resolved IspS from F. septica and F. virgata and other IspSs in a clade together with TPS-b clade I, whereas IspS from C. equisetifolia was within another clade, sister to TPS-b clade II. The optimum reaction temperature was 40 A degrees C for the IspSs isolated from the tropical trees, and 45 A degrees C for P. alba IspS. The optimum pH of the IspSs from the tropical trees peaked between pH 8 and pH10 contrasting with the rather broad optimum pH (7.5-10.5) of P. alba IspS. IspSs from F. septica and F. virgata were activated solely by Mg2+, whereas IspS from C. equisetifolia was dependent more on Mn2+ than on Mg2+. Michaelis constant (Km) values of IspSs from tropical trees were lower than that of P. alba IspS. Analysis of inter fragment interaction energy of IspS-substrate complex model and crystal structure of bornyl diphosphate synthase (1N20) found that the coordination geometry of amino acids with higher attraction force is similar at the active site of C. equisetifolia IspS and bornyl diphosphate synthase. These observations suggest the occurrence of another group of IspSs in TPS-b subfamily and extend the knowledge on biochemical regulatory mechanism of isoprene emission from tropical trees.
机译:从热带树木(Ficus septica,F。virgata和Casuarina equisetifolia)中分离了三个异戊二烯合酶(IspS)cDNA克隆,并将其酶学性质与白杨IspS的酶性质进行了比较。用已知的单萜合酶推导的氨基酸序列进行系统进化分析,可分离出败血双歧杆菌和维氏乳杆菌的IspS以及进化枝中与TPS-b进化枝I一起的其他IspS,而马齿C的IspS位于另一个进化枝中,是TPS的姐妹-b进化枝II。从热带树木中分离出的IspS的最佳反应温度为40 A摄氏度,而白假单胞菌IspS的最佳反应温度为45 A摄氏度。来自热带树木的IspS的最佳pH在pH 8和pH10之间达到峰值,而白假单胞菌IspS的相当宽的最佳pH(7.5-10.5)相反。来自败血镰刀菌和维氏镰刀菌的IspSs仅被Mg2 +激活,而来自马鞭毛衣藻的IspS更依赖于Mn2 +,而不是Mg2 +。来自热带树木的IspS的米氏常数(Km)值低于白僵菌IspS的米氏常数。对IspS-底物复杂模型的片段间相互作用能和冰片烷基二磷酸合酶(1N20)的晶体结构进行分析,发现具有较高吸引力的氨基酸的配位几何在马鞭毛衣原体IspS和冰片烷基二磷酸合酶的活性位点相似。这些观察结果提示TPS-b亚家族中存在另一组IspS,并且扩展了对热带树木异戊二烯排放的生化调节机制的认识。

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