Salvaing Juliette, Lopez Aurore, Boivin Antoine, Deutsch Jean S, Peronnet Frédérique
UMR 7622-Biologie du Développement, CNRS et Université Paris VI, 9 Quai Saint-Bernard, F-75252 Paris cedex 05, France.
Nucleic Acids Res. 2003 Jun 1;31(11):2873-82. doi: 10.1093/nar/gkg381.
In Drosophila, PcG complexes provide heritable transcriptional silencing of target genes. Among them, the ESC/E(Z) complex is thought to play a role in the initiation of silencing whereas other complexes such as the PRC1 complex are thought to maintain it. PcG complexes are thought to be recruited to DNA through interaction with DNA binding proteins such as the GAGA factor, but no direct interactions between the constituents of PcG complexes and the GAGA factor have been reported so far. The Drosophila corto gene interacts with E(z) as well as with genes encoding members of maintenance complexes, suggesting that it could play a role in the transition between the initiation and maintenance of PcG silencing. Moreover, corto also interacts genetically with Trl, which encodes the GAGA factor, suggesting that it may serve as a mediator in recruiting PcG complexes. Here, we show that Corto bears a chromo domain and we provide evidence for in vivo association of Corto with ESC and with PC in embryos. Moreover, we show by GST pull-down and two-hybrid experiments that Corto binds to E(Z), ESC, PH, SCM and GAGA and co-localizes with these proteins on a few sites on polytene chromosomes. These results reinforce the idea that Corto plays a role in PcG silencing, perhaps by confering target specificity.
在果蝇中,多梳蛋白复合体(PcG)可对靶基因进行可遗传的转录沉默。其中,ESC/E(Z)复合体被认为在沉默起始过程中发挥作用,而其他复合体如PRC1复合体则被认为负责维持沉默。PcG复合体被认为是通过与DNA结合蛋白(如GAGA因子)相互作用而被招募到DNA上,但迄今为止尚未报道过PcG复合体的组成成分与GAGA因子之间存在直接相互作用。果蝇的corto基因与E(z)以及与编码维持复合体成员的基因相互作用,这表明它可能在PcG沉默的起始和维持之间的转变过程中发挥作用。此外,corto还与编码GAGA因子的Trl发生遗传相互作用,这表明它可能作为招募PcG复合体的介质。在这里,我们表明Corto具有一个染色质结构域,并且我们提供了胚胎中Corto与ESC以及PC在体内存在关联的证据。此外,我们通过GST下拉实验和双杂交实验表明,Corto与E(Z)、ESC、PH、SCM和GAGA结合,并与这些蛋白质在多线染色体上的一些位点共定位。这些结果强化了这样一种观点,即Corto可能通过赋予靶标特异性而在PcG沉默中发挥作用。