Department of Entomology, China Agricultural University, Beijing, China.
Arch Insect Biochem Physiol. 2012 Oct;81(2):63-76. doi: 10.1002/arch.21032. Epub 2012 Jun 13.
Short-chain prenyltransferases are responsible for biosynthesis of the C(10)-C(20) precursors of a variety of isoprenoids. We previously isolated two different short-chain prenyltransferases from the green peach aphid, Myzus persicae (MpIPPS1 and MpIPPS2). In this study, the activity of the two aphid prenyltransferases was analyzed in vitro. Kinetic analysis using recombinant enzymes showed that both prenyltransferases could efficiently catalyze the formation of C(10) geranyl diphosphate (GPP) and C(15) farnesyl diphosphate (FPP) from the C(5) substrates isopentenyl diphosphate (IPP) and dimethylallyl diphosphate (DMAPP), and MpIPPS2 had higher catalytic activity than MpIPPS1. Product analysis by gas chromatography-mass spectrometry demonstrated that FPP was generated as the major product, but GPP could be detected at low enzyme concentrations. Molecular docking revealed that MpIPPS2 had higher binding affinity with the substrates DMAPP, IPP, and GPP than MpIPPS1, which supported the experimentally determined kinetic parameters. Molecular docking also identified an amino acid residue (K266) critical to the catalytic activity of both MpIPPS1 and MpIPPS2. This prediction was subsequently confirmed by site-directed mutagenesis, in which a point mutation (K266I) abolished the activity of both MpIPPS1 and MpIPPS2. Our data illustrate that both aphid short-chain prenyltransferases are active forms, which is in contrast to the previously reported results.
短链 prenyltransferases 负责多种异戊烯基前体的 C(10)-C(20) 前体的生物合成。我们之前从绿桃蚜(Myzus persicae)中分离出两种不同的短链 prenyltransferases(MpIPPS1 和 MpIPPS2)。在这项研究中,体外分析了这两种蚜虫 prenyltransferases 的活性。使用重组酶进行的动力学分析表明,两种 prenyltransferases 都能有效地催化 C(5) 底物异戊二烯二磷酸(IPP)和二甲基烯丙基二磷酸(DMAPP)生成 C(10) 香叶基二磷酸(GPP)和 C(15) 法呢基二磷酸(FPP),并且 MpIPPS2 的催化活性高于 MpIPPS1。气相色谱-质谱联用分析表明,FPP 是主要产物,但在低酶浓度下也可以检测到 GPP。分子对接表明,MpIPPS2 与底物 DMAPP、IPP 和 GPP 的结合亲和力高于 MpIPPS1,这支持了实验测定的动力学参数。分子对接还确定了一个对 MpIPPS1 和 MpIPPS2 的催化活性都至关重要的氨基酸残基(K266)。这一预测随后通过定点突变得到了证实,其中一个点突变(K266I)使 MpIPPS1 和 MpIPPS2 的活性都丧失。我们的数据表明,两种蚜虫短链 prenyltransferases 都是活性形式,这与之前报道的结果相反。