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Subcellular location and function of a putative juvenile hormone esterase binding protein in Drosophila melanogaster.

机译:果蝇中假定的少年激素酯酶结合蛋白的亚细胞定位和功能。

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摘要

Insect development, metamorphosis and reproduction are regulated in part by the action of juvenile hormone (JH). The titer of JH is regulated in turn by the action of the enzymes juvenile hormone epoxide hydrolase and juvenile hormone esterase (JHE). Because of the potential for disruption of regulation of insect development through perturbation of the action of JH, the biology of JHE has been well studied. A putative juvenile hormone esterase binding protein, P29 was identified in the tobacco hornworm, Manduca sexta. Following sequencing of the Drosophila melanogaster genome, we identified a homolog of P29 in D. melanogaster, and used this insect for analysis of the biology and function of P29 in relation to JHE.;The gene encoding D. melanogaster P29 (DmP29), CG3776 was cloned, recombinant DmP29 expressed in E. coli and two anti-DmP29 antisera raised. In vitro binding of the P29 homolog to Drosophila JHE was confirmed. P29 mRNA and an immunoreactive protein of 25 kDa were detected in Drosophila larvae, pupae and adults. The predicted size of the protein is 30kD. Drosophila P29 is predicted to localize to mitochondria (MitoProt; 93% probability) and has a 6kD N-terminal targeting sequence. Subcellular organelle fractionation and confocal microscopy of Drosophila S2 cells confirmed that the immunoreactive 25kD protein is present in mitochondria but not in the cytosol. Expression of P29 without the predicted N-terminal targeting sequence in High Five(TM) cells showed that the N-terminal targeting sequence is shorter than predicted, and that a second, internal mitochondrial targeting signal is also present. An immunoreactive protein of 50 kDa in the hemolymph does not result from alternative splicing of CG3776 but may result from dimerization of P29.;We investigated the potential ligands of DmP29 by testing three hypotheses: (i) DmP29 binds to D. melanogaster JHE: We produced a stably transformed insect cell line that expresses DmJHE and confirmed that DmP29 binds to D. melanogaster P29. DmJHE binds to both the 25 kD and 50 kD immunoreactive proteins. (ii) DmP29 binds other, non-specific esterases including two esterases predicted to be targeted to the mitochondria: We did not detect any interaction between DmP29 and non-specific esterases. (iii) DmP29 binds to other proteins in D. melanogaster: Ligand blot analysis, immunoprecipitation experiments and affinity binding experiments showed that larval serum protein 1 binds the 25 kD P29. The possible biological relevance of the in vitro DmP29-JHE interaction is provided by detection of JHE activity in D. melanogaster mitochondrial fractions; 0.48 nmol JH hydrolysed/min/mg mitochondrial protein, 97% of which was inhibited by the JHE-specific inhibitor OTFP. However, the DmP29-LSP interactions may not be biologically relevant, given the high abundance, and "sticky" nature of these proteins. Interaction of DmP29 with LSP may result from non-specific associations. We used P29 hypo- and hyper-expression mutants to elucidate the function of P29 and the potential interaction of P29 with JHE. The hypomorphic mutant EP835 of P29 had reduced JHE activity when compared to wild type flies. Hyperexpression of P29 in EP/Gal4 during the early larval stages was lethal, while hyperexpression during the third instar resulted in reduced size of adult flies. This phenotype showed that overexpression of P29 interfered with insect development. Hyperexpression in newly eclosed but not in older females resulted in reduced fecundity, indicating that overexpression of P29 affected ovarian development. Fecundity was not affected by P29 hyperexpression in the male. Hypermorphic adults exhibited male-male courtship behavior. Hyperexpressed females showed reduced receptivity to males. Hyperexpressed females had decreased production of courtship pheromone, cis, cis-7, 11-hepta cosadiene, which resulted in male flies being unable to locate female flies. Hyperexpression of P29 in males resulted in decreased production of the aggregation pheromone, cis-vaccenyl acetate. For EP835/Gal4, the hypermorphic mutant, all hyperexpression phenotypes were consistent with a reduced JH titer in Drosophila. Flies that hypo- or hyper-expressed P29 had a significantly shorter lifespan: Reduced lifespan correlated with increased egg production (hypomorphic flies) and hyperactivity (hypermorphic flies), respectively. Hence, the titer of P29 appeared to be positively correlated with the titer of JHE and negatively correlated with the titer of JH. Based on the collective phenotypes and detection of JHE activity in mitochondria, we hypothesize that JHE is stored in mitochondria and that P29 functions in transport of JHE to the cytosol.
机译:昆虫的发育,变态和繁殖在一定程度上受到少年激素(JH)的调节。 JH的效价又受少年激素环氧化物水解酶和少年激素酯酶(JHE)的作用调节。由于通过干扰JH的作用可能破坏昆虫发育的调控,因此对JHE的生物学进行了深入研究。在烟草天牛中,已鉴定出一种推定的少年激素酯酶结合蛋白P29。果蝇果蝇基因组测序后,我们鉴定了D. melanogaster中的P29同源物,并使用该昆虫来分析P29与JHE的生物学和功能。;编码D. melanogaster P29(DmP29),CG3776的基因克隆后,在大肠杆菌中表达的重组DmP29和产生了两种抗DmP29抗血清。证实了P29同源物与果蝇JHE的体外结合。在果蝇幼虫,p和成虫中检测到P29 mRNA和25 kDa的免疫反应蛋白。蛋白质的预测大小为30kD。果蝇P29预计定位于线粒体(MitoProt; 93%的概率),并具有6kD N端靶向序列。果蝇S2细胞的亚细胞器分离和共聚焦显微镜检查证实,免疫反应性25kD蛋白存在于线粒体中,而在细胞质中不存在。在High FiveTM细胞中没有预测的N末端靶向序列的P29的表达表明,N末端靶向序列比预期的短,并且还存在第二个内部线粒体靶向信号。血淋巴中50 kDa的免疫反应蛋白不是由CG3776的可变剪接产生的,而是由P29的二聚化产生的。产生了表达DmJHE的稳定转化的昆虫细胞系,并证实DmP29与D. melanogaster P29结合。 DmJHE与25 kD和50 kD免疫反应蛋白结合。 (ii)DmP29结合其他非特异性酯酶,包括两个预计靶向线粒体的酯酶:我们未检测到DmP29与非特异性酯酶之间的任何相互作用。 (iii)DmP29与黑腹果蝇中的其他蛋白质结合:配体印迹分析,免疫沉淀实验和亲和结合实验表明,幼虫血清蛋白1与25 kD P29结合。体外DmP29-JHE相互作用的可能生物学相关性通过检测黑腹果蝇线粒体组分中的JHE活性提供。 0.48 nmol JH水解/ min / mg线粒体蛋白,其中97%被JHE特异性抑制剂OTFP抑制。但是,鉴于这些蛋白的高丰度和“粘性”性质,DmP29-LSP相互作用可能与生物学无关。 DmP29与LSP的交互作用可能是由非特定的关联引起的。我们使用P29的低表达和高表达突变体来阐明P29的功能以及P29与JHE的潜在相互作用。与野生型果蝇相比,P29的亚型突变体EP835具有降低的JHE活性。在幼虫早期,EP / Gal4中P29的高表达是致命的,而第三龄期的高表达导致成年果蝇尺寸减少。该表型表明P29的过表达干扰昆虫的发育。在新封闭的雌性动物中过度表达,而在老年雌性动物中则没有,导致生殖力降低,表明P29的过度表达影响卵巢发育。产卵不受男性中P29过表达的影响。过高的成年人表现出男女求偶行为。过度表达的女性对男性的接受能力降低。过度表达的雌性减少了求爱信息素,顺式,顺式7、11庚二甲烯的生成,导致雄蝇无法找到雌蝇。男性中P29的过表达导致聚集信息素,顺式-乙酸乙烯酯的生成减少。对于EP835 / Gal4(高变型突变体),所有高表达表型均与果蝇中JH滴度降低有关。低表达或过表达P29的果蝇的寿命显着缩短:寿命缩短分别与产蛋量增加(亚同性果蝇)和活动过度(果蝇)有关。因此,P29的滴度似乎与JHE的滴度正相关,而与JH的滴度负相关。基于集体的表型和线粒体中JHE活性的检测,我们假设JHE存储在线粒体中,P29在JHE向细胞质的转运中起作用。

著录项

  • 作者

    Liu, Zhiyan.;

  • 作者单位

    Iowa State University.;

  • 授予单位 Iowa State University.;
  • 学科 Biology Molecular.;Biology Genetics.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 168 p.
  • 总页数 168
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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