Fisher Jasmin, Piterman Nir, Hubbard E Jane Albert, Stern Michael J, Harel David
Department of Computer Science and Applied Mathematics, Weizmann Institute of Science, Rehovot 76100, Israel.
Proc Natl Acad Sci U S A. 2005 Feb 8;102(6):1951-6. doi: 10.1073/pnas.0409433102. Epub 2005 Jan 31.
Studies of Caenorhabditis elegans vulval development provide a paradigm for pattern formation during animal development. The fates of the six vulval precursor cells are specified by the combined action of an inductive signal that activates the EGF receptor mitogen-activated PK signaling pathway (specifying a primary fate) and a lateral signal mediated by LIN-12/Notch (specifying a secondary fate). Here we use methods devised for the engineering of complex reactive systems to model a biological system. We have chosen the visual formalism of statecharts and use it to formalize Sternberg and Horvitz's 1989 model [Sternberg, P. W. & Horvitz, H. R. (1989) Cell 58, 679-693], which forms the basis for our current understanding of the interaction between these two signaling pathways. The construction and execution of our model suggest that different levels of the inductive signal induce a temporally graded response of the EGF receptor mitogen-activated PK pathway and make explicit the importance of this temporal response. Our model also suggests the existence of an additional mechanism operating during lateral specification that prohibits neighboring vulval precursor cells from assuming the primary fate.
秀丽隐杆线虫外阴发育的研究为动物发育过程中的模式形成提供了一个范例。六个外阴前体细胞的命运由激活表皮生长因子(EGF)受体丝裂原活化蛋白激酶(PK)信号通路的诱导信号(决定主要命运)和由LIN-12/Notch介导的侧向信号(决定次要命运)共同作用决定。在此,我们使用为复杂反应系统工程设计的方法来模拟一个生物系统。我们选择了状态图的可视化形式,并使用它来形式化斯特恩伯格和霍维茨1989年的模型[Sternberg, P. W. & Horvitz, H. R. (1989) Cell 58, 679 - 693],该模型构成了我们目前对这两条信号通路之间相互作用理解的基础。我们模型的构建和执行表明,不同水平的诱导信号会诱导EGF受体丝裂原活化PK通路产生时间上的分级反应,并明确了这种时间反应的重要性。我们的模型还表明,在侧向特化过程中存在一种额外的机制,可阻止相邻的外阴前体细胞采用主要命运。