首页> 美国卫生研究院文献>Proceedings of the Japan Academy. Series B Physical and Biological Sciences >General strategy for understanding intracellular molecular interaction cascades that elicit stimulus-invoked biological processes
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General strategy for understanding intracellular molecular interaction cascades that elicit stimulus-invoked biological processes

机译:了解细胞内分子相互作用级联反应引发刺激过程的一般策略

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摘要

Recent advances in biology have been driven by chemical analyses of the substances that form living organisms. Such analyses are extremely powerful as way of learning about the static properties of molecular species, but relatively powerless for understanding their dynamic behaviors even though this dynamism is essential for organisms to perform various biological processes that perpetuate their lives. Thus, attempts to identify individual species and molecular interaction cascades that drive specific responses to external stimuli or environmental changes often fail. Here I propose a general strategy to address this problem. The strategy comprises two key elements: functional manipulation of a given protein molecule coupled with close monitoring of its biological effect, and construction of a knowledge base tailored for conjecture-driven experimentation. The original idea for this strategy co-evolved with and greatly helped a series of studies we recently performed to discover critical signal cascades and cellular components that regulate the cell cycle transition from G1 to S phase.
机译:对形成活生物体的物质进行化学分析已推动了生物学的最新进展。这样的分析作为了解分子种类静态特性的方法非常有力,但是对于了解它们的动态行为而言却相对无能为力,尽管这种动力对于生物体执行各种维持生命的生物过程至关重要。因此,试图识别单个物种和分子相互作用的级联的尝试往往会失败,这些相互作用和级联会驱动对外部刺激或环境变化的特定反应。在这里,我提出了解决该问题的一般策略。该策略包括两个关键要素:给定蛋白质分子的功能操纵,以及对其生物学效应的密切监控,以及为猜想驱动的实验量身定制的知识库的构建。此策略的最初构想与我们最近进行的一系列研究共同发展,并为我们提供了重要帮助,这些研究发现了关键信号级联和调节细胞周期从G1到S期转变的细胞成分。

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