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Attractor structures of signaling networks: Consequences of different conformational barcode dynamics and their relations to network-based drug design

机译:信号网络的吸引子结构:不同构象条形码动态的后果及其与基于网络的药物设计的关系

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摘要

Conformational barcodes tag functional sites of proteins and are decoded by interacting molecules transmitting the incoming signal. Conformational barcodes are modified by all co-occurring allosteric events induced by post-translational modifications, pathogen, drug binding, etc. We argue that fuzziness (plasticity) of conformational barcodes may be increased by disordered protein structures, by integrative plasticity of multi-phosphorylation events, by increased intracellular water content (decreased molecular crowding) and by increased action of molecular chaperones. This leads to increased plasticity of signaling and cellular networks. Increased plasticity is both substantiated by and inducing an increased noise level. Using the versatile network dynamics tool, Turbine (www.turbine.linkgroup.hu), here we show that the 10% noise level expected in cellular systems shifts a cancer-related signaling network of human cells from its proliferative attractors to its largest, apoptotic attractor representing their health-preserving response in the carcinogen containing and tumor suppressor deficient environment modeled in our study. Thus, fuzzy conformational barcodes may not only make the cellular system more plastic, and therefore more adaptable, but may also stabilize the complex system allowing better access to its largest attractor. © 2014 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.
机译:构象条形码标记蛋白质的功能位点,并通过传递输入信号的相互作用分子进行解码。构象条形码被翻译后修饰,病原体,药物结合等诱导的所有同时发生的变构事件所修饰。我们认为,构象条形码的模糊性(可塑性)可能由于蛋白质结构紊乱,多磷酸化的整体可塑性而增加。通过增加细胞内水含量(减少分子拥挤)和增加分子伴侣的作用来控制这些事件。这导致信令和蜂窝网络的可塑性增强。可塑性的提高既可以通过增加噪音水平来实现,又可以通过增加噪音水平来实现。使用通用的网络动力学工具Turbine(www.turbine.linkgroup.hu),我们在这里展示了细胞系统中预期的10%噪声水平将与癌症相关的人类细胞信号网络从其增殖性吸引物转移到了最大的凋亡细胞上。在我们的研究中建模的含有致癌物和肿瘤抑制因子缺乏的环境中,代表它们的健康应答的吸引子。因此,模糊的构象条形码不仅可以使蜂窝系统更具塑性,因此更具适应性,而且可以稳定复杂的系统,从而更好地访问其最大的吸引子。 ©2014 WILEY-VCH Verlag GmbH&Co. KGaA,Weinheim。

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