首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Transcriptional regulation of juvenile hormone-mediated induction of Krüppel homolog 1 a repressor of insect metamorphosis
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Transcriptional regulation of juvenile hormone-mediated induction of Krüppel homolog 1 a repressor of insect metamorphosis

机译:幼虫激素介导的Krüppel同源物1(昆虫变态的阻遏物)的转录调控

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摘要

The Krüppel homolog 1 gene (Kr-h1) has been proposed to play a key role in the repression of insect metamorphosis. Kr-h1 is assumed to be induced by juvenile hormone (JH) via a JH receptor, methoprene-tolerant (Met), but the mechanism of induction is unclear. To elucidate the molecular mechanism of Kr-h1 induction, we first cloned cDNAs encoding Kr-h1 (BmKr-h1) and Met (BmMet1 and BmMet2) homologs from Bombyx mori. In a B. mori cell line, BmKr-h1 was rapidly induced by subnanomolar levels of natural JHs. Reporter assays identified a JH response element (kJHRE), comprising 141 nucleotides, located ∼2 kb upstream from the BmKr-h1 transcription start site. The core region of kJHRE (GGCCTCCACGTG) contains a canonical E-box sequence to which Met, a basic helix–loop–helix Per-ARNT-Sim (bHLH–PAS) transcription factor, is likely to bind. In mammalian HEK293 cells, which lack an intrinsic JH receptor, ectopic expression of BmMet2 fused with Gal4DBD induced JH-dependent activity of an upstream activation sequence reporter. Meanwhile, the kJHRE reporter was activated JH-dependently in HEK293 cells only when cotransfected with BmMet2 and BmSRC, another bHLH–PAS family member, suggesting that BmMet2 and BmSRC jointly interact with kJHRE. We also found that the interaction between BmMet2 and BmSRC is dependent on JH. Therefore, we propose the following hypothesis for the mechanism of JH-mediated induction of BmKr-h1: BmMet2 accepts JH as a ligand, JH-liganded BmMet2 interacts with BmSRC, and the JH/BmMet2/BmSRC complex activates BmKr-h1 by interacting with kJHRE.
机译:有人提出了Krüppel同源1基因(Kr-h1)在抑制昆虫变态中起关键作用。 Kr-h1被认为是由少年激素(JH)通过甲氧戊二烯耐受(Met)的JH受体诱导的,但其诱导机理尚不清楚。为了阐明Kr-h1诱导的分子机制,我们首先从家蚕中克隆了编码Kr-h1(BmKr-h1)和Met(BmMet1和BmMet2)同源物的cDNA。在桑蚕芽孢杆菌细胞系中,亚纳摩尔水平的天然JHs快速诱导BmKr-h1。记者分析鉴定出一个JH反应元件(kJHRE),它包含141个核苷酸,位于BmKr-h1转录起始位点上游约2 kb。 kJHRE(GGCCTCCACGTG)的核心区域包含一个规范的E-box序列,Met(基本的螺旋-环-螺旋Per-ARNT-Sim(bHLH-PAS)转录因子)可能与之结合。在缺乏内在的JH受体的哺乳动物HEK293细胞中,与Gal4DBD融合的BmMet2的异位表达诱导了上游激活序列报告基因的JH依赖性活性。同时,仅当与另一个bHLH-PAS家族成员BmMet2和BmSRC共转染时,kJHRE报告基因才在HEK293细胞中被JH依赖性激活,这表明BmMet2和BmSRC与kJHRE共同相互作用。我们还发现BmMet2和BmSRC之间的相互作用取决于JH。因此,我们为JH介导的 BmKr-h1 的机制提出以下假设:BmMet2接受JH作为配体,JH配位的BmMet2与BmSRC相互作用,并且JH / BmMet2 / BmSRC复合物通过与 k JHRE交互来激活 BmKr-h1

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