Dias Catarina, Dilão Rui
University of Lisbon, IST, Dep. of Physics, Nonlinear Dynamics Group, Av. Rovisco Pais, 1049-001, Lisbon, Portugal.
Dev Biol. 2025 Jan;517:178-190. doi: 10.1016/j.ydbio.2024.09.015. Epub 2024 Oct 4.
We modelled and calibrated the distributions of the seven-stripe patterns of Even-skipped (Eve) and Fushi-tarazu (Ftz) pair-rule proteins along the anteroposterior axis of the Drosphila embryo, established during early development. We have identified the putative repressive combinations for five Eve enhancers, and we have explored the relationship between Eve and Ftz for complementary patterns. The regulators of Eve and Ftz are stripe-specific DNA enhancers with embryo position-dependent activation rates and are regulated by the gap family of proteins. We achieved remarkable data matching of the Eve stripe pattern, and the calibrated model reproduces gap gene mutation experiments. Extended work inferring the Wingless (Wg) fourteen stripe pattern from Eve and Ftz enhancers have been proposed, clarifying the hierarchical structure of Drosphila's genetic expression network during early development.
我们对果蝇胚胎前后轴上早期发育过程中形成的成对规则蛋白偶数跳(Eve)和腹节缺失(Ftz)的七条带模式的分布进行了建模和校准。我们确定了五个Eve增强子的假定抑制组合,并探索了Eve和Ftz互补模式之间的关系。Eve和Ftz的调节因子是具有胚胎位置依赖性激活率的条带特异性DNA增强子,并受间隙蛋白家族的调控。我们实现了Eve条带模式的显著数据匹配,校准后的模型再现了间隙基因突变实验。有人提出了从Eve和Ftz增强子推断无翅(Wg)十四条带模式的扩展工作,阐明了果蝇早期发育过程中基因表达网络的层次结构。