Department of Biochemistry and Molecular Biology, University of Nevada, Reno, NV 89557, United States.
Insect Biochem Mol Biol. 2012 Feb;42(2):81-90. doi: 10.1016/j.ibmb.2011.10.009. Epub 2011 Nov 11.
Ipsdienone (2-methyl-6-methylene-2,7-octadien-4-one) is an important intermediate in the biosynthesis of pheromonal ipsdienol (2-methyl-6-methylene-2,7-octadien-4-ol) and ipsenol (2-methyl-6-methylene-7-octen-4-ol) in male pine engraver beetles, Ips pini (Say). A novel ipsdienol dehydrogenase (IDOLDH) with a pheromone-biosynthetic gene expression pattern was cloned, expressed, functionally characterized, and its cellular localization analyzed. The cDNA has a 762nt ORF encoding a 253 amino acid predicted translation product of 28kDa and pI 5.8. The protein has conserved motifs of the Cp2 subfamily of "classical" short-chain dehydrogenases. Transcript levels were highest in pheromone producing tissue: the anterior midgut of fed males. The protein was detected only in male midguts and localized in the cytosolic fraction of midgut cells. Recombinant IDOLDH was produced in Sf9 cells using a baculovirus expression system. Enzyme assays of protein preparations showed IDOLDH used both NAD⁺ and NADP⁺ as coenzymes with specific activities in the nanomole range. Enzyme assays and GC/MS analysis showed that IDOLDH catalyzed the oxidation of racemic ipsdienol and (4R)-(-)-ipsdienol to form ipsdienone, while (4S)-(+)-ipsdienol was not a substrate. These data strongly implicate IDOLDH as an enzyme involved in terminal pheromone-biosynthetic steps, likely functioning to "tune" ipsdienol enantiomeric ratios.
异佛尔酮(2-甲基-6-亚甲基-2,7-辛二烯-4-酮)是雄性松雕象鼻虫 Ips pini(Say)中信息素异佛尔醇(2-甲基-6-亚甲基-2,7-辛二烯-4-醇)和异佛尔醇(2-甲基-6-亚甲基-7-辛烯-4-醇)生物合成的重要中间体。克隆、表达、功能表征了一种具有信息素生物合成基因表达模式的新型异佛尔醇脱氢酶(IDOLDH),并分析了其细胞定位。该 cDNA 具有 762nt 的 ORF,编码一个 253 个氨基酸的预测翻译产物,分子量为 28kDa,等电点为 5.8。该蛋白具有“经典”短链脱氢酶 Cp2 亚家族的保守基序。在产生信息素的组织中:喂食雄性的前中肠,转录水平最高。该蛋白仅在雄性中肠中检测到,并定位于中肠细胞的胞质部分。使用杆状病毒表达系统在 Sf9 细胞中生产重组 IDOLDH。蛋白制剂的酶活性测定表明,IDOLDH 同时使用 NAD ⁺ 和 NADP ⁺ 作为辅酶,具有纳摩尔级别的比活性。酶活性测定和 GC/MS 分析表明,IDOLDH 催化外消旋异佛尔醇和(4R)-(-)-异佛尔醇氧化为异佛尔酮,而(4S)-(+)-异佛尔醇不是底物。这些数据强烈表明 IDOLDH 是参与末端信息素生物合成步骤的酶,可能起到“调节”异佛尔醇对映体比例的作用。