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真菌蜕皮甾类 22-氧化酶,一种用于操纵蜕皮甾类信号和昆虫发育的新工具。

Fungal ecdysteroid-22-oxidase, a new tool for manipulating ecdysteroid signaling and insect development.

机构信息

National Institute of Agrobiological Sciences, Owashi, Tsukuba, Ibaraki 305-8634, Japan.

出版信息

J Biol Chem. 2012 May 11;287(20):16488-98. doi: 10.1074/jbc.M112.341180. Epub 2012 Mar 14.

Abstract

Steroid hormones ecdysteroids regulate varieties of developmental processes in insects. Although the ecdysteroid titer can be increased experimentally with ease, its artificial reduction, although desirable, is very difficult to achieve. Here we characterized the ecdysteroid-inactivating enzyme ecdysteroid-22-oxidase (E22O) from the entomopathogenic fungus Nomuraea rileyi and used it to develop methods for reducing ecdysteroid titer and thereby controlling insect development. K(m) and K(cat) values of the purified E22O for oxidizing ecdysone were 4.4 μM and 8.4/s, respectively, indicating that E22O can inactivate ecdysone more efficiently than other ecdysteroid inactivating enzymes characterized so far. The cloned E22O cDNA encoded a FAD-dependent oxidoreductase. Injection of recombinant E22O into the silkworm Bombyx mori interfered with larval molting and metamorphosis. In the hemolymph of E22O-injected pupae, the titer of hormonally active 20-hydroxyecdysone decreased and concomitantly large amounts of inactive 22-dehydroecdysteroids accumulated. E22O injection also prevented molting of various other insects. In the larvae of the crambid moth Haritalodes basipunctalis, E22O injection induced a diapause-like developmental arrest, which, as in normal diapause, was broken by chilling. Transient expression of the E22O gene by in vivo lipofection effectively decreased the 20-hydroxyecdysone titer and blocked molting in B. mori. Transgenic expression of E22O in Drosophila melanogaster caused embryonic morphological defects, phenotypes of which were very similar to those of the ecdysteroid synthesis deficient mutants. Thus, as the first available simple but versatile tool for reducing the internal ecdysteroid titer, E22O could find use in controlling a broad range of ecdysteroid-associated developmental and physiological phenomena.

摘要

甾醇激素蜕皮激素调节昆虫的各种发育过程。虽然蜕皮激素的滴度可以很容易地通过实验增加,但人为降低其水平虽然是可取的,但却非常困难。在这里,我们从昆虫病原真菌 N. rileyi 中鉴定了蜕皮激素失活酶蜕皮激素-22-氧化酶 (E22O),并利用它开发了降低蜕皮激素滴度从而控制昆虫发育的方法。纯化的 E22O 氧化蜕皮酮的 K(m)和 K(cat)值分别为 4.4 μM 和 8.4/s,表明 E22O 比迄今为止鉴定的其他蜕皮激素失活酶更有效地使蜕皮酮失活。克隆的 E22O cDNA 编码一个 FAD 依赖的氧化还原酶。将重组 E22O 注射到家蚕中会干扰幼虫蜕皮和变态。在 E22O 注射的蛹血淋巴中,具有生物活性的 20-羟基蜕皮酮的滴度降低,同时大量不活跃的 22-脱氢蜕皮酮积累。E22O 注射也阻止了其他各种昆虫的蜕皮。在卷叶蛾幼虫 Haritalodes basipunctalis 中,E22O 注射诱导类似于正常滞育的滞育样发育停滞,这种停滞可通过冷藏打破。通过体内脂质体转染瞬时表达 E22O 基因有效地降低了 20-羟基蜕皮酮的滴度并阻止了家蚕的蜕皮。在果蝇中表达 E22O 可导致胚胎形态缺陷,其表型与蜕皮激素合成缺陷突变体非常相似。因此,作为第一种可用于降低体内蜕皮激素滴度的简单但通用的工具,E22O 可以用于控制广泛的蜕皮激素相关的发育和生理现象。

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Cloning and characterization of the Bombyx mori ecdysone oxidase.家蚕蜕皮激素氧化酶的克隆与特性分析
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