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Molecular interaction maps of bioregulatory networks: A general rubric for systems biology

机译:生物调控网络的分子相互作用图:系统生物学的一般原理

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摘要

A standard for bioregulatory network diagrams is urgently needed in the same way that circuit diagrams are needed in electronics. Several graphical notations have been proposed, but none has become standard. We have prepared many detailed bioregulatory network diagrams using the molecular interaction map (MIM) notation, and we now feel confident that it is suitable as a standard. Here, we describe the MIM notation formally and discuss its merits relative to alternative proposals. We show by simple examples how to denote all of the molecular interactions commonly found in bioregulatory networks. There are two forms of MIM diagrams. "Heuristic" MIMs present the repertoire of interactions possible for molecules that are colocalized in time and place. "Explicit" MIMs define particular models (derived from heuristic MIMs) for computer simulation. We show also how pathways or processes can be highlighted on a canonical heuristic MIM. Drawing a MIM diagram, adhering to the rules of notation, imposes a logical discipline that sharpens one's understanding of the structure and function of a network.
机译:迫切需要与电子电路中需要电路图相同的方式来建立生物调节网络图的标准。已经提出了几种图形符号,但是没有一种已经成为标准。我们已经使用分子相互作用图(MIM)表示法准备了许多详细的生物调节网络图,并且现在我们确信它适合作为标准。在这里,我们正式描述MIM表示法,并讨论其相对于其他建议的优点。我们通过简单的示例说明如何表示生物调控网络中常见的所有分子相互作用。 MIM图有两种形式。 “启发式” MIMs提供了可能在时间和位置上共定位的分子的相互作用的所有组成部分。 “显式” MIM定义了用于计算机仿真的特定模型(源自启发式MIM)。我们还展示了如何在规范的启发式MIM上突出显示路径或过程。遵循表示法规则绘制MIM图,将形成一门逻辑学科,以加深对网络结构和功能的理解。

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