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NADP~+-dependent farnesol dehydrogenase, a corpora allata enzyme involved in juvenile hormone synthesis

机译:NADP〜+依赖的法尼醇脱氢酶,一种参与幼体激素合成的全集酶

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摘要

The synthesis of juvenile hormone (JH) is an attractive target for control of insect pests and vectors of disease, but the minute size of the corpora allata (CA), the glands that synthesize JH, has made it difficult to identify important biosynthetic enzymes by classical biochemical approaches. Here, we report identification and characterization of an insect farnesol dehydrogenase (AaSDR-1) that oxidizes farnesol into farnesal, a precursor of JH, in the CA. AaSDR-1 was isolated as an EST in a library of the corpora allata-corpora cardiaca of the mosquito Aedes aegypti. The 245-amino acid protein presents the typical short-chain dehydrogenase (SDR) Rossmann-fold motif for nudeotide binding. This feature, together with other conserved sequence motifs, place AaSDR-1 into the "classical" NADP~+-dependent cP2 SDR subfamily. The gene is part of a group of highly conserved paralogs that cluster together in the mosquito genome; similar clusters of orthologs were found in other insect species. AaSDR-1 acts as a homodimer and efficiently oxidizes C_(10) to C_(15) isoprenoid and aliphatic alcohols, showing the highest affinity for the conversion of farnesol into farnesal. Farnesol dehydrogenase activity was not detected in the CA of newly emerged mosquitoes but significant activity was detected 24 h later. Real time PCR experiments revealed that AaSDR-1 mRNA levels were very low in the inactive CA of the newly emerged female, but increased >30-fold 24 h later during the peak of JH synthesis. These results suggest that oxidation of farnesol might be a rate-limiting step in JH III synthesis in adult mosquitoes.
机译:幼体激素(JH)的合成是控制害虫和病媒的一个有吸引力的目标,但是合成JH的腺体(CA)的细小尺寸使其难以识别重要的生物合成酶。经典的生化方法。在这里,我们报告鉴定和鉴定一种昆虫法呢醇脱氢酶(AaSDR-1),该酶将CA中的法呢醇氧化成法呢醛(JH的前体)。 AaSDR-1是在埃及伊蚊(Aedes aegypti)的全体心脏全体文库中作为EST分离的。 245个氨基酸的蛋白质呈现出典型的短链脱氢酶(SDR)Rossmann折叠基元与核苷酸结合。该特征与其他保守的序列基序一起将AaSDR-1置于“经典的” NADP〜+依赖性cP2 SDR亚家族中。该基因是在蚊子基因组中聚集在一起的一组高度保守的旁系同源物的一部分。在其他昆虫物种中也发现了类似的直系同源物簇。 AaSDR-1作为同型二聚体,可有效地将C_(10)氧化为C_(15)类异戊二烯和脂族醇,显示出将法呢醇转化为法呢醛的最高亲和力。在新出现的蚊子的CA中未检测到法尼醇脱氢酶活性,但24小时后检测到显着活性。实时PCR实验表明,在新出现的雌性动物的失活CA中,AaSDR-1 mRNA的水平非常低,但在JH合成高峰期24小时后,其升高> 30倍。这些结果表明,法尼醇的氧化可能是成年蚊子JH III合成中的一个限速步骤。

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  • 作者单位

    Department of Biological Sciences, Florida International University, 11200 5W8th Street, Miami, FL 33199;

    Department of Biological Sciences, Florida International University, 11200 5W8th Street, Miami, FL 33199;

    School of Chemistry and Biochemistry, Georgia Institute of Technology, Atlanta, GA 30332;

    Department of Biological Sciences, Florida International University, 11200 5W8th Street, Miami, FL 33199;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    mosquito; Aedes; farnesal; insect;

    机译:蚊子;伊蚊;法尼萨尔昆虫;
  • 入库时间 2022-08-18 00:42:10

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