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保幼激素的分子作用机制 总被引:1,自引:0,他引:1
蜕皮激素(ecdysteroids, Ecd)和保幼激素(juvenile hormone, JH)是调控昆虫发育和变态的两种最为重要的昆虫激素。尽管Ecd的分子作用机制已经相当明了,但是,因为迄今为止还没有成功地鉴定出JH受体,人们对JH的分子作用机制还了解甚少。本文从三个方面较为详尽地介绍了近年来JH分子作用机制的相关研究进展:1) JH和Ecd在分子水平上相互作用, JH可以通过改变或者抑制Ecd信号来调控昆虫的发育和变态;2) JH核受体的两个候选基因为Met和USP;3) JH还可以通过膜受体和蛋白激酶C传导信号。 相似文献
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保幼激素(juvenile hormone,JH)和蜕皮激素(20-hydroxyecdysone,20E)是协同调控昆虫发育、变态与生殖的两个重要激素。由于20E的主要分子作用机制已经比较明了,揭示JH的分子作用机制成为过去20多年来昆虫学领域研究的一个重点和难点。国内外多个研究团队利用赤拟谷盗Tribolium castaneum、果蝇Drosophilamelanogaster、烟草天蛾Manduca sexta等为模式,在JH受体的鉴定、JH在昆虫发育变态和生殖中的分子调控机制以及JH与20E在分子水平上的交互作用等方面开展了大量的研究工作,本文就近几年在这些方面取得的主要研究进展作一个综述。 相似文献
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保幼激素生物合成研究进展 总被引:1,自引:0,他引:1
保幼激素(juvenile hormone,JH)是存在于昆虫、甲壳动物和部分植物体内的倍半萜类衍生物。在昆虫和甲壳动物体内,保幼激素主要调节变态和生殖活动。在植物体内,则可能作为异株克生物质发挥作用。保幼激素主要通过细胞质内的甲羟戊酸途径(MVA)合成,植物质体内存在萜类合成的1-去氧木糖-5-磷酸途径(DXP)。MVA和DXP途径通过单向质子协同运输系统进行协调,使DXP途径中形成的前体化合物参与MVA途径的倍半萜合成。JH生物合成的主要步骤己基本查明,但与合成相关的酶学研究还较薄弱。生物合成酶的分子生物学是近来研究的热点,相关酶的cDNA克隆已有报道。JH生物合成酶的进一步研究有助于查明JH生物合成调控机制,深化对节肢动物生殖的理解,还可为新型杀虫剂开发提供可能的靶标。 相似文献
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变态发育是昆虫适应生态环境和气候变化的主要生存策略之一.保幼激素(juvenile hormone,JH)和蜕皮激素(20-hydroxyecdysone,20E)的相互作用主要调控昆虫组织凋亡和重建、蜕皮等变态生理活动,近年来保幼激素和蜕皮激素调控昆虫变态发育的分子机制取得了较大的进展.本研究总结了JH和20E的合成... 相似文献
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甲状旁腺激素样激素(Parathyroid hormone-like hormone, PTHLH)又称为甲状旁腺激素相关蛋白(Parathyroid hormone-related protein, PTHrP),发现初期被认为是引起人类恶性肿瘤伴发的高钙血症的主要原因。进一步的研究发现,PTHLH在不同物种的多种成体和胎儿组织中均有表达,其生物学作用涉及形态发生、细胞生长与分化的调控、胎盘钙的转运等多个方面。文章主要综述了PTHLH的生物学特性及其在胚胎发育过程中的作用,并进一步探讨了涉及的信号通路及可能的作用机制。 相似文献
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保幼激素(Juvenile hormone,JH)是昆虫特有的一类倍半萜烯类激素。JH在幼/若虫中主要通过拮抗蜕皮激素20E信号影响变态发育,从而维持昆虫幼虫性状。JH在成虫中作为促性腺激素,通过调控雌雄一系列生理和行为促进生殖。JH信号调控雌性生殖主要包括促进卵巢卵子发生、卵黄发生、排卵、滞育、雌性性信息素合成、肠道和卵巢等器官的大小适应性调整等。JH信号促进雄性生殖,主要包括促进附性腺精液蛋白的合成、羽化后调节雄性性行为,进而促进生殖。本文从雌雄性昆虫角度分别阐述JH信号调控生殖的机制,以期为深入探明JH调控昆虫生殖的作用机制提供参考。 相似文献
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R. Michael Roe Douglas D. Anspaugh Krishnappa Venkatesh Russell J. Linderman David M. Graves 《Archives of insect biochemistry and physiology》1997,36(3):165-179
Thio-containing and acetylenic trifluoromethyl ketones were potent inhibitors of insect juvenile hormone (JH) esterase with greater inhibitory activity than aliphatic and α,β-unsaturated homologs. Octylthio-1,1,1-trifluoropropan-2-one was the most potent inhibitor with the greatest equilibrium hydration constant in pure water. However, a keto/hydrate equilibrium was not necessary for JH esterase inhibition. The carbonyl tautomer of 1-octyl [1-(3,3,3-trifluoropropan-2,2- dihydroxy)] sulfone (OTPdOH-sulfone) was not detectable, and yet OTPdOH-sulfone was a potent in vitro inhibitor of JH esterase with an I50 of 1.2 nM. The mechanism of JH esterase inhibition by these compounds is discussed. OTPdOH-sulfone inhibited JH esterase with minimal activity toward insect 1-naphthyl acetate esterase and electric eel acetylcholinesterase. The inhibitor was also active in vivo, selective for JH esterase, and persistent for over 32 h. OTPdOH-sulfone when topically applied to larval and adult cabbage loopers, Trichoplusia ni, elicited juvenoid activity apparently because of the specific in vivo inhibition of JH metabolism. Arch. Insect Biochem. Physiol. 36:165–179, 1997. © 1997 Wiley-Liss, Inc. 相似文献
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保幼激素(juvenile hormone, JH)是昆虫内分泌系统中的关键激素之一,对昆虫生长发育、变态、繁殖起着重要的调控作用。近年来有关JH的分子作用机制取得了极大的进展,主要得益于JH受体的鉴定,大量研究表明JH可通过胞内受体和膜受体两个途径来发挥生理调控功能。本文将从JH胞内受体Met的发现及鉴定、Met转录活性的调控因素、Met功能研究进展,以及Met作为JH受体在JH激动剂及拮抗剂筛选中的应用等方面对JH胞内受体的研究进展进行重点阐述;同时综述了有关JH膜受体的信号通路以及膜受体与核受体的互作等方面的研究进展。 相似文献
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Jose L. Maestro 《Insect Science》2018,25(5):787-796
Juvenile hormone (JH), a sesquiterpenoid synthetized by the insect corpora allata (CA), plays critical roles in metamorphosis and reproduction. Penultimate or last step of JH synthesis is catalyzed by juvenile hormone acid O‐methyltransferase (JHAMT). Here we report the cloning and expression analysis of the JHAMT orthologue in the cockroach, Blattella germanica (L.) (BgJHAMT). BgJHAMT is mainly expressed in CA, with only expression traces in ovary. Three different isoforms, differing in the 3′‐UTR sequence, were identified. Isoform A shows between 35 and 65 times higher expression than B and C in CA from penultimate nymphal instar and adult females. RNAi‐triggered knock down of BgJHAMT produces a dramatic reduction of JH synthesis, concomitant with a decrease of fat body vitellogenin expression and basal follicle length. BgJHAMT mRNA levels in CA of females along the gonadotrophic cycle parallel, with a slight advancement, JH synthesis profile. BgJHAMT mRNA levels were reduced in starved females and in females in which we reduced nutritional signaling by knocking down insulin receptor and target of rapamycin (TOR). Results show that conditions that modify JH synthesis in adult B. germanica females show parallel changes of BgJHAMT mRNA levels and that the JH‐specific branch of the JH synthesis pathway is regulated in the same way as the mevalonate branch. Furthermore, we demonstrate that nutrition and its signaling through the insulin receptor and TOR pathways are essential for activating BgJHAMT expression, which suggests that this enzyme can be a checkpoint for the regulation of JH production in relation to nutritional status. 相似文献
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【目的】保幼激素受体Methoprene-tolerant(Met)控制保幼激素信号传导途径中重要下游转录因子Krüppelhomolog 1(Kr-h1)的表达,调控昆虫的变态发育。本研究旨在探究褐飞虱Nilaparvata lugens Met基因与Kr-h1在褐飞虱变态发育中的功能。【方法】利用PCR技术扩增Nl Met基因的ORF序列。通过RNA干扰技术分别或同时沉默褐飞虱若虫的Nl Met和Nl Kr-h1基因,进一步研究其功能。【结果】克隆得到Nl Met,其开放阅读框包含1 185 bp,编码395个氨基酸,包括b HLH,PAS-A,PAS-B和PAC 4个结构域;其中PAS-B和PAC保守性较高,而b HLH和PAS-A保守性相对较低。采用RNA干扰技术沉默Nl Met和Nl Kr-h1基因后发现,单独对4龄若虫Nl Kr-h1基因干扰后,若虫阶段及初羽化雌虫和雄虫死亡率均显著上升(P0.05);对5龄若虫Nl Kr-h1基因干扰后只有若虫死亡率上升(P0.05),单独对Nl Met基因干扰后死亡率没有显著变化(P0.05);二者共同沉默后的死亡率同单独对Nl Kr-h1沉默时类似。此外,我们还发现单独对4龄若虫Nl Kr-h1干扰后在雌虫中出现了生殖器畸形,虽然Nl Met干扰并未出现生殖器发育畸形现象,但二者共同干扰后,在若虫、初羽化雌雄成虫中畸形比例均显著增加(P0.05)。【结论】Nl Met与下游转录因子Nl Kr-h1对褐飞虱变态发育起到重要作用,影响若虫到成虫的变态和外生殖器的发育。本研究有助于揭示Nl Met和Nl Kr-h1在昆虫变态发育中的重要作用。 相似文献
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Pengchao Guo Yunshi Zhang Li Zhang Haiyang Xu Huan Zhang Zhan Wang Yongliang Jiang David Molloy Ping Zhao Qingyou Xia 《The Journal of biological chemistry》2021,297(5)
Juvenile hormone (JH) acid methyltransferase (JHAMT) is a rate-limiting enzyme that converts JH acids or inactive precursors of JHs to active JHs at the final step of JH biosynthesis in insects and thus presents an excellent target for the development of insect growth regulators or insecticides. However, the three-dimensional properties and catalytic mechanism of this enzyme are not known. Herein, we report the crystal structure of the JHAMT apoenzyme, the three-dimensional holoprotein in binary complex with its cofactor S-adenosyl-l-homocysteine, and the ternary complex with S-adenosyl-l-homocysteine and its substrate methyl farnesoate. These structures reveal the ultrafine definition of the binding patterns for JHAMT with its substrate/cofactor. Comparative structural analyses led to novel findings concerning the structural specificity of the progressive conformational changes required for binding interactions that are induced in the presence of cofactor and substrate. Importantly, structural and biochemical analyses enabled identification of one strictly conserved catalytic Gln/His pair within JHAMTs required for catalysis and further provide a molecular basis for substrate recognition and the catalytic mechanism of JHAMTs. These findings lay the foundation for the mechanistic understanding of JH biosynthesis by JHAMTs and provide a rational framework for the discovery and development of specific JHAMT inhibitors as insect growth regulators or insecticides. 相似文献