Department of Pharmacology and Molecular Sciences, The Johns Hopkins University School of Medicine, Baltimore, MD 21205, USA.
Proc Natl Acad Sci U S A. 2010 Mar 23;107(12):5459-64. doi: 10.1073/pnas.0909671107. Epub 2010 Mar 8.
The signaling pathway mediated by JNK transduces different types of signals, such as stress stimuli and cytokines, into functional responses that mediate apoptosis, as well as proliferation, differentiation, and inflammation. To better characterize the dynamic information flow and signal processing of this pathway in the cellular context, a genetically encoded, fluorescent protein-based biosensor was engineered to detect endogenous JNK activity. This biosensor, named JNKAR1 (for JNK activity reporter), specifically detects stress- (ribotoxic and osmotic) and cytokine- (TNF-alpha) induced JNK activity in living cells with a 15 to 30% increase in the yellow-to-cyan emission ratio because of a phosphorylation-dependent increase in FRET between two fluorescent proteins. JNK activity was detected not only in the cytoplasm, but also in the nucleus, mitochondria, and plasma membrane with similar kinetics after induction of ribotoxic stress by anisomycin, suggesting relatively rapid signal propagation to the nuclear, mitochondrial, and plasma membrane compartments. Furthermore, quantitative single-cell analysis revealed that anisomycin-induced JNK activity exhibited ultrasensitivity, sustainability, and bimodality, features that are consistent with behaviors of bistable systems. The development of JNKAR1, therefore, laid a foundation for evaluating the signaling properties and behaviors of the JNK cascade in single living cells.
JNK 介导的信号通路将不同类型的信号(如应激刺激和细胞因子)转导为功能反应,介导细胞凋亡以及增殖、分化和炎症。为了更好地描述该通路在细胞环境中的动态信息流和信号处理,设计了一种基于遗传编码、荧光蛋白的生物传感器来检测内源性 JNK 活性。这种生物传感器命名为 JNKAR1(代表 JNK 活性报告器),它可以特异性地检测活细胞中应激(核糖体毒性和渗透胁迫)和细胞因子(TNF-α)诱导的 JNK 活性,由于两个荧光蛋白之间的 FRET 因磷酸化依赖性而增加,黄色到青色的发射比增加了 15%到 30%。JNK 活性不仅在细胞质中被检测到,而且在核、线粒体和质膜中也被检测到,在用 anisomycin 诱导核糖体毒性后具有相似的动力学,这表明信号相对较快地传递到核、线粒体和质膜区室。此外,定量的单细胞分析表明,anisomycin 诱导的 JNK 活性表现出超敏性、持续性和双峰性,这些特征与双稳态系统的行为一致。因此,JNKAR1 的开发为评估 JNK 级联在单个活细胞中的信号特性和行为奠定了基础。