Frank Henrique Oliveira, Sanchez Danilo Garcia, de Freitas Oliveira Lucas, Kobarg Jörg, Monesi Nadia
Programa de Pós-Graduação em Biologia Celular e Molecular, Faculdade de Medicina de Ribeirão Preto, Universidade de São Paulo, Av. Bandeirantes 3900, Ribeirão Preto, São Paulo, 14049-900, Brazil.
Departamento de Análises Clínicas, Toxicológicas e Bromatológicas, Faculdade de Ciências Farmacêuticas de Ribeirão Preto, Universidade de São Paulo, Av. do Café, sem número, Ribeirão Preto, São Paulo, 14040-903, Brazil.
Genesis. 2017 Nov;55(11). doi: 10.1002/dvg.23075. Epub 2017 Oct 17.
The DNA puff BhC4-1 gene of Bradysia hygida (Diptera, Sciaridae) is amplified and expressed in the salivary glands at the end of the last larval instar. Even though there are no BhC4-1 orthologs in Drosophila melanogaster, the mechanisms that regulate BhC4-1 gene expression in B. hygida are for the most part conserved in D. melanogaster. The BhC4-1 promoter contains a 129bp (-186/-58) cis-regulatory module (CRM) that drives developmentally regulated expression in transgenic salivary glands at the onset of metamorphosis. Both in the sciarid and in transgenic D. melanogaster, BhC4-1 gene expression is induced by the increase in ecdysone titers that triggers metamorphosis. Genetic interaction experiments revealed that in the absence of the Eip74EF-PA early gene isoform BhC4-1-lacZ levels of expression in the salivary gland are severely reduced. Here we show that the overexpression of the Eip74EF-PA transcription factor is sufficient to anticipate BhC4-1-lacZ expression in transgenic D. melanogaster. Through yeast one-hybrid assays we confirm that the Eip74EF-PA transcription factor directly binds to the 129 bp sciarid CRM. Together, these results contribute to the characterization of an insect CRM and indicate that the ecdysone gene regulatory network that promotes metamorphosis is conserved between D. melanogaster and the sciarid B. hygida.
大菌蚊(双翅目,菌蚊科)的DNA胀泡BhC4-1基因在末龄幼虫末期的唾液腺中被扩增并表达。尽管在黑腹果蝇中没有BhC4-1直系同源基因,但在大菌蚊中调控BhC4-1基因表达的机制在很大程度上在黑腹果蝇中是保守的。BhC4-1启动子包含一个129bp(-186/-58)的顺式调控模块(CRM),该模块在变态开始时驱动转基因唾液腺中受发育调控的表达。在菌蚊和转基因黑腹果蝇中,BhC4-1基因表达均由触发变态的蜕皮激素滴度增加所诱导。遗传相互作用实验表明,在缺乏Eip74EF-PA早期基因亚型的情况下,唾液腺中BhC4-1-lacZ的表达水平会严重降低。在这里我们表明,Eip74EF-PA转录因子的过表达足以提前在转基因黑腹果蝇中表达BhC4-1-lacZ。通过酵母单杂交试验,我们证实Eip74EF-PA转录因子直接与129bp的菌蚊CRM结合。这些结果共同有助于对昆虫CRM的表征,并表明促进变态的蜕皮激素基因调控网络在黑腹果蝇和菌蚊大菌蚊之间是保守的。