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Mapping the functional versatility and fragility of Ras GTPase signaling circuits through in vitro network reconstitution

机译:通过体外网络重构绘制Ras GTPase信号转导电路的功能多样性和脆弱性

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摘要

The Ras-superfamily GTPases are central controllers of cell proliferation and morphology. Ras signaling is mediated by a system of interacting molecules: upstream enzymes (GEF/GAP) regulate Ras’s ability to recruit multiple competing downstream effectors. We developed a multiplexed, multi-turnover assay for measuring the dynamic signaling behavior of in vitro reconstituted H-Ras signaling systems. By including both upstream regulators and downstream effectors, we can systematically map how different network configurations shape the dynamic system response. The concentration and identity of both upstream and downstream signaling components strongly impacted the timing, duration, shape, and amplitude of effector outputs. The distorted output of oncogenic alleles of Ras was highly dependent on the balance of positive (GAP) and negative (GEF) regulators in the system. We found that different effectors interpreted the same inputs with distinct output dynamics, enabling a Ras system to encode multiple unique temporal outputs in response to a single input. We also found that different Ras-to-GEF positive feedback mechanisms could reshape output dynamics in distinct ways, such as signal amplification or overshoot minimization. Mapping of the space of output behaviors accessible to Ras provides a design manual for programming Ras circuits, and reveals how these systems are readily adapted to produce an array of dynamic signaling behaviors. Nonetheless, this versatility comes with a trade-off of fragility, as there exist numerous paths to altered signaling behaviors that could cause disease.>DOI:
机译:Ras超家族GTPases是细胞增殖和形态的主要控制者。 Ras信号传导是由相互作用的分子系统介导的:上游酶(GEF / GAP)调节Ras募集多种竞争性下游效应子的能力。我们开发了用于测量体外重组H-Ras信号系统动态信号行为的多重,多周转分析。通过同时包括上游调节器和下游效应器,我们可以系统地绘制不同的网络配置如何塑造动态系统响应。上游和下游信号成分的浓度和特性强烈影响效应器输出的时间,持续时间,形状和幅度。 Ras致癌等位基因的失真输出高度依赖于系统中正(GAP)和负(GEF)调节剂的平衡。我们发现,不同的效应器以不同的输出动态来解释相同的输入,从而使Ras系统能够响应单个输入来编码多个唯一的时间输出。我们还发现,不同的Ras-to-GEF正反馈机制可以以不同的方式重塑输出动态,例如信号放大或过冲最小化。 Ras可访问的输出行为空间的映射提供了用于对Ras电路进行编程的设计手册,并揭示了这些系统如何轻松适应产生动态信号行为的阵列。但是,这种多功能性需要在脆弱性之间进行权衡,因为存在多种途径来改变可能导致疾病的信号传导行为。> DOI:

著录项

  • 期刊名称 eLife
  • 作者

    Scott M Coyle; Wendell A Lim;

  • 作者单位
  • 年(卷),期 2016(5),-1
  • 年度 2016
  • 页码 e12435
  • 总页数 34
  • 原文格式 PDF
  • 正文语种
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