Farkas G, Gausz J, Galloni M, Reuter G, Gyurkovics H, Karch F
Department of Zoology and Animal Biology, University of Geneva, Switzerland.
Nature. 1994 Oct 27;371(6500):806-8. doi: 10.1038/371806a0.
Little is known about the way higher-order chromatin structure influences gene expression and chromosome topology in general. Genetic analysis in Drosophila has led to the discovery of two classes of genes, the regulators of homeotic genes and the modifiers of position-effect variegation, which seem to be good candidates for encoding some of the factors regulating chromatin functions. The Trithorax-like gene we described here is required for the normal expression of the homeotic genes and is a modifier of position-effect variegation. We found that Trithorax-like encodes the GAGA factor which is involved in the formation of an accessible chromatin structure at promoter sequences. Our genetic analysis suggests that the chromatin modelling function of the GAGA factor is not restricted to promoter regions.
总体而言,关于高阶染色质结构影响基因表达和染色体拓扑结构的方式,我们了解得还很少。果蝇中的遗传分析已导致发现了两类基因,即同源异型基因的调控因子和位置效应斑驳的修饰因子,它们似乎是编码一些调节染色质功能的因子的良好候选者。我们在此描述的类三胸基因是同源异型基因正常表达所必需的,并且是位置效应斑驳的修饰因子。我们发现类三胸基因编码GAGA因子,该因子参与启动子序列处可及染色质结构的形成。我们的遗传分析表明,GAGA因子的染色质建模功能并不局限于启动子区域。