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分割果蝇胚胎:成对规则交叉调节模块的逻辑分析

Segmenting the fly embryo: a logical analysis of the pair-rule cross-regulatory module.

作者信息

Sánchez Lucas, Thieffry Denis

机构信息

Centro de Investigaciones Biológicas, Velázquez 144, 28006 Madrid, Spain.

出版信息

J Theor Biol. 2003 Oct 21;224(4):517-37. doi: 10.1016/s0022-5193(03)00201-7.

DOI:10.1016/s0022-5193(03)00201-7
PMID:12957124
Abstract

This manuscript reports a dynamical analysis of the pair-rule cross-regulatory module controlling segmentation in Drosophila melanogaster. We propose a logical model accounting for the ability of the pair-rule module to determine the formation of alternate juxtaposed Engrailed- and Wingless-expressing cells that form the (para)segmental boundaries. This module has the intrinsic capacity to generate four distinct expression states, each characterized by the expression of a particular combination of pair-rule genes or expression mode. The selection of one of these expression modes depends on the maternal and gap inputs, but also crucially on cross-regulations among pair-rule genes. The latter are instrumental in the interpretation of the maternal-gap pre-pattern. Our logical model allows the qualitative reproduction of the patterns of pair-rule gene expressions corresponding to the wild type situation, to loss-of-function and cis-regulatory mutations, and to ectopic pair-rule expressions. Furthermore, this model provides a formal explanation for the morphogenetic role of the initial bell-shaped expression of the gene even-skipped, i.e. for the distinct effects of different levels of the Even-skipped protein on its target pair-rule genes. It also accounts for the requirement of Even-skipped for the formation of all Engrailed-stripes. Finally, it provides new insights into the roles and evolutionary origins of the apparent redundancies in the regulatory architecture of the pair-rule module.

摘要

本手稿报道了对控制黑腹果蝇体节形成的成对规则交叉调节模块的动力学分析。我们提出了一个逻辑模型,该模型解释了成对规则模块确定交替并列的表达Engrailed和Wingless的细胞形成(副)体节边界的能力。该模块具有产生四种不同表达状态的内在能力,每种状态都以成对规则基因的特定组合表达或表达模式为特征。这些表达模式之一的选择取决于母体和间隙输入,但也关键取决于成对规则基因之间的交叉调节。后者有助于解释母体 - 间隙前模式。我们的逻辑模型能够定性地再现与野生型情况、功能丧失和顺式调节突变以及异位成对规则表达相对应的成对规则基因表达模式。此外,该模型为基因even-skipped最初钟形表达的形态发生作用提供了形式化解释,即不同水平的Even-skipped蛋白对其靶成对规则基因的不同影响。它还解释了形成所有Engrailed条纹对Even-skipped的需求。最后,它为成对规则模块调控结构中明显冗余的作用和进化起源提供了新的见解。

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