Suppr超能文献

定量动力学分析关闭双组分系统。

Quantitative Kinetic Analyses of Shutting Off a Two-Component System.

机构信息

Department of Biochemistry and Molecular Biology, Center for Advanced Biotechnology and Medicine, Rutgers University-Robert Wood Johnson Medical School, Piscataway, New Jersey, USA.

Department of Biochemistry and Molecular Biology, Center for Advanced Biotechnology and Medicine, Rutgers University-Robert Wood Johnson Medical School, Piscataway, New Jersey, USA

出版信息

mBio. 2017 May 16;8(3):e00412-17. doi: 10.1128/mBio.00412-17.

Abstract

Cells rely on accurate control of signaling systems to adapt to environmental perturbations. System deactivation upon stimulus removal is as important as activation of signaling pathways. The two-component system (TCS) is one of the major bacterial signaling schemes. In many TCSs, phosphatase activity of the histidine kinase (HK) is believed to play an essential role in shutting off the pathway and resetting the system to the prestimulus state. Two basic challenges are to understand the dynamic behavior of system deactivation and to quantitatively evaluate the role of phosphatase activity under natural cellular conditions. Here we report a kinetic analysis of the response to shutting off the archetype PhoR-PhoB TCS pathway using both transcription reporter assays and phosphorylation analyses. Upon removal of the stimulus, the pathway is shut off by rapid dephosphorylation of the PhoB response regulator (RR) while PhoB-regulated gene products gradually reset to prestimulus levels through growth dilution. We developed an approach combining experimentation and modeling to assess kinetic parameters of the phosphatase activity with kinetic data from multiple phosphatase-diminished mutants. This enabled an estimation of the PhoR phosphatase activity , which is much stronger than the phosphatase activity of PhoR cytoplasmic domains analyzed We quantitatively modeled how strong the phosphatase activity needs to be to suppress nonspecific phosphorylation in TCSs and discovered that strong phosphatase activity of PhoR is required for cross-phosphorylation suppression. Activation of TCSs has been extensively studied; however, the kinetics of shutting off TCS pathways is not well characterized. We present comprehensive analyses of the shutoff response for the PhoR-PhoB system that reveal the impact of phosphatase activity on shutoff kinetics. This allows development of a quantitative framework not only to characterize the phosphatase activity in the natural cellular environment but also to understand the requirement for specific strengths of phosphatase activity to suppress nonspecific phosphorylation. Our model suggests that the ratio of the phosphatase rate to the nonspecific phosphorylation rate correlates with TCS expression levels and the ratio of the RR to HK, which may contribute to the great diversity of enzyme levels and activities observed in different TCSs.

摘要

细胞依赖于信号系统的精确控制来适应环境变化。刺激消除后系统失活与信号通路的激活同样重要。双组分系统(TCS)是细菌主要的信号转导方案之一。在许多 TCS 中,组氨酸激酶(HK)的磷酸酶活性被认为在关闭途径和将系统重置为刺激前状态方面起着至关重要的作用。目前面临的两个基本挑战是理解系统失活的动态行为,并在自然细胞条件下定量评估磷酸酶活性的作用。在这里,我们使用转录报告基因分析和磷酸化分析报告了对关闭原型 PhoR-PhoB TCS 途径的响应的动力学分析。在去除刺激后,PhoB 反应调节剂(RR)通过快速去磷酸化迅速关闭途径,而 PhoB 调节的基因产物通过生长稀释逐渐恢复到刺激前水平。我们开发了一种结合实验和建模的方法,使用来自多个磷酸酶减弱突变体的动力学数据来评估磷酸酶活性的动力学参数。这使我们能够估计 PhoR 磷酸酶的活性,其强度远强于分析的 PhoR 细胞质结构域的磷酸酶活性。我们定量地模拟了 TCS 中需要多强的磷酸酶活性来抑制非特异性磷酸化,并发现 PhoR 的强磷酸酶活性对于交叉磷酸化抑制是必需的。TCS 的激活已被广泛研究;然而,TCS 途径的失活动力学尚未很好地描述。我们对 PhoR-PhoB 系统的失活响应进行了全面分析,揭示了磷酸酶活性对失活动力学的影响。这不仅为在自然细胞环境中表征磷酸酶活性提供了一个定量框架,也为理解抑制非特异性磷酸化所需的特定磷酸酶活性强度提供了依据。我们的模型表明,磷酸酶速率与非特异性磷酸化速率的比值与 TCS 表达水平以及 RR 与 HK 的比值相关,这可能有助于解释不同 TCS 中观察到的酶水平和活性的巨大多样性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/67dc/5433096/95bf7381e91c/mbo0031733060001.jpg

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