Ben-Tabou de-Leon Smadar, Davidson Eric H
Division of Biology, California Institute of Technology, Pasadena, CA 91125, USA.
Sci STKE. 2006 Nov 14;2006(361):pe47. doi: 10.1126/stke.3612006pe47.
The regulatory genome functions as a vast information processor through development. It processes the initial conditions that are set by asymmetric distributions of cellular components in the egg and translates them into the onset of spatially localized specification states. It regulates the timely differential activation of signaling molecules and transcription factors that divide the emerging domains into subdomains. It also governs the activation of groups of differentiation genes, the genes that encode, at the protein level, the functional and the structural properties of a cell type. The sea urchin endomesoderm gene regulatory network provides a window into the different levels of the regulatory apparatus. It demonstrates how the static physical genomic components define functional connections between the various regulatory genes that act together to conduct the dynamical developmental program.
调控基因组在发育过程中起着庞大信息处理器的作用。它处理由卵子中细胞成分的不对称分布所设定的初始条件,并将其转化为空间定位的特化状态的起始。它调节信号分子和转录因子的适时差异激活,这些分子将新出现的区域划分为子区域。它还控制分化基因群的激活,这些基因在蛋白质水平上编码细胞类型的功能和结构特性。海胆内胚层中胚层基因调控网络为了解调控机制的不同层面提供了一个窗口。它展示了静态的物理基因组成分如何定义各种调控基因之间的功能联系,这些基因共同作用以执行动态的发育程序。