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Cloning and characterization of farnesyl pyrophosphate synthase from the highly branched isoprenoid producing diatom Rhizosolenia setigera

机译:高度分支的类异戊二烯硅藻根瘤菌(Rhizosolenia setigera)法呢基焦磷酸合酶的克隆与鉴定

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摘要

The diatom Rhizosolenia setigera Brightwell produces highly branched isoprenoid (HBI) hydrocarbons that are ubiquitously present in marine environments. The hydrocarbon composition of R. setigera varies between C25 and C30 HBIs depending on the life cycle stage with regard to auxosporulation. To better understand how these hydrocarbons are biosynthesized, we characterized the farnesyl pyrophosphate (FPP) synthase (FPPS) enzyme of R. setigera. An isolated 1465-bp cDNA clone contained an open reading frame spanning 1299-bp encoding a protein with 432 amino acid residues. Expression of the RsFPPS cDNA coding region in Escherichia coli produced a protein that exhibited FPPS activity in vitro. A reduction in HBI content from diatoms treated with an FPPS inhibitor, risedronate, suggested that RsFPPS supplies precursors for HBI biosynthesis. Product analysis by gas chromatography-mass spectrometry also revealed that RsFPPS produced small amounts of the cis-isomers of geranyl pyrophosphate and FPP, candidate precursors for the cis-isomers of HBIs previously characterized. Furthermore, RsFPPS gene expression at various life stages of R. setigera in relation to auxosporulation were also analyzed. Herein, we present data on the possible role of RsFPPS in HBI biosynthesis, and it is to our knowledge the first instance that an FPPS was cloned and characterized from a diatom.
机译:硅藻根瘤菌(Rhizosolenia setigera Brightwell)生产高度支化的异戊二烯(HBI)碳氢化合物,这些碳氢化合物普遍存在于海洋环境中。 Setigera R. setigera的碳氢化合物组成在C25和C30 HBI之间有所不同,具体取决于无孢子孢子的生命周期阶段。为了更好地理解这些碳氢化合物是如何生物合成的,我们对了R. setigera的法呢基焦磷酸(FPP)合酶(FPPS)进行了表征。分离的1465 bp cDNA克隆包含一个跨越1299 bp的开放阅读框,编码一个具有432个氨基酸残基的蛋白质。 RsFPPS cDNA编码区在大肠杆菌中的表达产生了一种在体外具有FPPS活性的蛋白质。 FPPS抑制剂利塞膦酸盐处理的硅藻中HBI含量的降低表明RsFPPS为HBI生物合成提供了前体。气相色谱-质谱法的产物分析还显示,RsFPPS产生了少量香叶基焦磷酸酯和FPP的顺式异构体,后者是先前表征的HBI顺式异构体的候选前体。此外,还分析了R. setigera在各个生命阶段与辅助孢子形成相关的RsFPPS基因表达。在这里,我们提供有关RsFPPS在HBI生物合成中可能作用的数据,据我们所知,FPPS是从硅藻中克隆并鉴定的。

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