Suppr超能文献

大肠杆菌培养物中cAMP介导的L-肉碱生物合成诱导过程中涉及的动态信号通路的定量分析。

Quantitative analysis of the dynamic signaling pathway involved in the cAMP mediated induction of l-carnitine biosynthesis in E. coli cultures.

作者信息

Hormiga José, González-Alcón Carlos, Sevilla Angel, Cánovas Manuel, Torres Néstor V

机构信息

Grupo de Tecnología Bioquímica, Departamento de Bioquímica y Biología Molecular, Facultad de Biología, Universidad de La Laguna, 38206, La Laguna, Tenerife, Islas Canarias, Spain.

出版信息

Mol Biosyst. 2010 Apr;6(4):699-710. doi: 10.1039/b913063b. Epub 2010 Jan 27.

Abstract

L-(-)-carnitine can be synthesized from waste bioprecursors in the form of crotonobetaine. Such biotransformation is carried out in E. coli by the enzymes encoded by operons regulated by the cAMP receptor proteins. Non-phosphorylated sugars, such as glycerol are used as energy and carbon source since glucose inhibits cAMP synthesis. Until now little attention has been paid to the regulatory signaling structure that operates during the transition from a glucose-consuming, non-l-carnitine producing steady state, to a glycerol-consuming l-carnitine producing steady state. In this work we aim to elucidate and quantify the underlying regulatory mechanisms operating in the abolition of the glucose inhibiting effect. For this purpose we make use of the systemic approach by integrating the available information and our own experimentally generated data to construct a mathematical model. The model is built using power-law representation and is used as a platform to make predictive simulations and to assess the consistency of the regulatory structure of the overall process. The model is subsequently checked for quality through stability and a special, dynamic sensitivity analysis. The results show that the model is able to deal with the observed system transient phase. The model is multi-hierarchical, comprising the metabolic, gene expression, signaling and bioreactor levels. It involves variables and parameters of a very different nature that develop in different time scales and orders of magnitude. Some of the most relevant conclusions obtained are: (i) the regulatory interactions among glucose, glycerol and cAMP metabolism are far stronger than those present in the l-carnitine transport, production and degradation processes; (ii) carnitine biosynthesis is very sensitive to the cAMP signaling system since it reacts at very low cAMP receptor concentrations, and (iii) ATP is a critical factor in the transient dynamics. All these model-derived observations have been experimentally confirmed by separate studies. As a whole, the model contributes to our general understanding of the transient regulation through the signal regulatory structure, thus enabling more accurate optimization strategies to be used.

摘要

L-(-)-肉碱可以由巴豆甜菜碱形式的废弃生物前体合成。这种生物转化在大肠杆菌中由cAMP受体蛋白调控的操纵子所编码的酶来进行。非磷酸化糖,如甘油,被用作能量和碳源,因为葡萄糖会抑制cAMP的合成。到目前为止,对于从消耗葡萄糖、不产生L-肉碱的稳态转变为消耗甘油、产生L-肉碱的稳态过程中起作用的调节信号结构,人们关注较少。在这项工作中,我们旨在阐明并量化消除葡萄糖抑制作用时潜在的调节机制。为此,我们采用系统方法,整合现有信息和我们自己通过实验生成的数据来构建一个数学模型。该模型使用幂律表示法构建,并用作进行预测模拟和评估整个过程调节结构一致性的平台。随后通过稳定性和特殊的动态敏感性分析来检查模型的质量。结果表明,该模型能够处理观察到的系统瞬态阶段。该模型是多层次的,包括代谢、基因表达、信号传导和生物反应器水平。它涉及性质非常不同的变量和参数,这些变量和参数在不同的时间尺度和数量级上变化。获得的一些最相关的结论是:(i)葡萄糖、甘油和cAMP代谢之间的调节相互作用远比L-肉碱转运、产生和降解过程中的调节相互作用强;(ii)肉碱生物合成对cAMP信号系统非常敏感,因为它在非常低的cAMP受体浓度下就会发生反应;(iii)ATP是瞬态动力学中的关键因素。所有这些从模型得出的观察结果都已通过单独的研究得到实验证实。总体而言,该模型有助于我们通过信号调节结构对瞬态调节有更全面的理解,从而能够使用更精确的优化策略。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验