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首页> 外文期刊>Fly >Sex-switching of the Drosophila brain by two antagonistic chromatin factors.
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Sex-switching of the Drosophila brain by two antagonistic chromatin factors.

机译:果蝇大脑通过两种拮抗染色质因子的性别转换。

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In Drosophila melanogaster, the fruitless (fru) gene encoding BTB-Zn-finger transcription factors organizes male sexual behavior by controlling the development of sexually dimorphic neuronal circuitry. However, the molecular mechanism by which fru controls the sexual fate of neurons has been unknown. Our recent study represents a first step toward clarification of this mechanism. We have shown that: (1) Fru forms a complex with the transcriptional cofactor Bonus (Bon), which recruits either of two chromatin regulators, Histone deacetylase 1 (HDAC1) or Heterochromatin protein 1a (HP1a), to Fru-target sites; (2) the Fru-Bon complex has a masculinizing effect on single sexually-dimorphic neurons when it recruits HDAC1, whereas it has a demasculinizing effect when it recruits HP1a; (3) HDAC1 or HP1a thus recruited to Fru-target sites determines the sexual fate of single neurons in an all-or-none manner, as manipulations of HDAC1 or HP1a expression levels affect the proportion of male-typical neurons and female-typical neurons without producing neurons of intersexual characteristics. Here, we hypothesize that chromatin landscape changes induced by ecdysone surges direct the HDAC1- or HP1a-containing Fru complex to distinct targets, thereby allowing them to switch the neuronal sexual fate in the brain.
机译:在果蝇中,编码BTB-Zn-手指转录因子的无果(fru)基因通过控制性双态神经元电路的发育来组织男性性行为。然而,fru控制神经元性命运的分子机制尚不清楚。我们最近的研究代表了澄清这一机制的第一步。我们已经表明:(1)Fru与转录辅因子Bonus(Bon)形成复合体,后者将两个染色质调节剂Histone脱乙酰基酶1(HDAC1)或异染色质蛋白1a(HP1a)募集到Fru目标位点; (2)Fru-Bon复合物在募集HDAC1时对单个性二态神经元具有男性化作用,而在募集HP1a时则具有去男性化作用; (3)如此募集到Fru目标位点的HDAC1或HP1a决定了单个神经元的性命运,因为对HDAC1或HP1a表达水平的操纵会影响男性典型神经元和女性典型神经元的比例不会产生具有两性特征的神经元。在这里,我们假设蜕皮激素激增引起的染色质景观变化将含有HDAC1或HP1a的Fru复合物引导至不同的靶标,从而使它们能够切换大脑中的神经元性命运。

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