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保幼激素调控的基因可变剪接在成年蚊子中引发蜕皮激素反应。

Juvenile hormone-regulated alternative splicing of the gene primes the ecdysteroid response in adult mosquitoes.

机构信息

Department of Biochemistry, Virginia Tech, Blacksburg, VA 24061.

The Interdisciplinary PhD Program in Genetics, Bioinformatics, and Computational Biology, Virginia Tech, Blacksburg, VA 24061.

出版信息

Proc Natl Acad Sci U S A. 2018 Aug 14;115(33):E7738-E7747. doi: 10.1073/pnas.1808146115. Epub 2018 Jul 30.

Abstract

Juvenile hormone (JH) regulates many aspects of insect development and reproduction. In some processes, JH plays a critical role in defining the action of the steroid hormone 20-hydroxyecdysone (20E). In mosquitoes, JH prepares newly emerged female adults to become competent to synthesize vitellogenin in response to 20E after blood ingestion. The molecular basis of this competence is still not well understood. Here, we report that JH regulates pre-mRNA splicing of the gene, which encodes a key transcriptional regulator required for both JH- and 20E-controlled gene expression. JH stimulated the production of the Taiman isoforms A/B, while reducing the levels of the isoforms C/D, in the fat body after adult eclosion. The appearance of the A/B isoforms in maturing mosquitoes was accompanied by acquisition of the competence to respond to 20E. Depletion of the A/B isoforms, by inhibiting the alternative splicing or by isoform-specific RNA interference, considerably diminished the 20E-induced gene expression after a blood meal and substantially impaired oocyte development. In accordance with this observation, further studies indicated that in the presence of 20E, the Taiman A/B isoforms showed much stronger interactions with the 20E receptor complex than the Taiman C/D isoforms. In contrast, all four isoforms displayed similar capabilities of forming active JH receptor complexes with the methoprene-tolerant protein (Met). This study suggested that JH confers the competence to newly emerged female mosquitoes by regulating mRNA splicing to generate the Taiman isoforms that are essential for the vitellogenic 20E response.

摘要

保幼激素 (JH) 调节昆虫发育和生殖的许多方面。在某些过程中,JH 在确定类固醇激素 20-羟蜕皮酮 (20E) 的作用方面起着关键作用。在蚊子中,JH 使新羽化的雌性成虫有能力在吸血后对 20E 做出反应合成卵黄蛋白原。这种能力的分子基础仍不清楚。在这里,我们报告 JH 调节 基因的前体 mRNA 剪接,该基因编码 20E 控制的基因表达所需的关键转录调节剂。JH 刺激 Taiman 同工型 A/B 的产生,同时减少 20E 诱导的基因表达所需的 C/D 同工型的水平,在成虫羽化后脂肪体中。在成熟蚊子中 A/B 同工型的出现伴随着对 20E 反应能力的获得。通过抑制选择性剪接或同工型特异性 RNA 干扰耗尽 A/B 同工型,在饱餐一顿血液后大大减少了 20E 诱导的基因表达,并严重损害卵母细胞发育。与这一观察结果一致,进一步的研究表明,在 20E 的存在下,Taiman A/B 同工型与 20E 受体复合物的相互作用比 Taiman C/D 同工型要强得多。相比之下,所有四个同工型都显示出与甲氧普林耐受蛋白 (Met) 形成具有活性 JH 受体复合物的相似能力。这项研究表明,JH 通过调节 mRNA 剪接来赋予新羽化的雌性蚊子能力,从而产生对卵黄生成 20E 反应至关重要的 Taiman 同工型。

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