Klomp Jennifer E, Huyot Vincent, Ray Anne-Marie, Collins Kerrie B, Malik Asrar B, Karginov Andrei V
Department of Pharmacology, University of Illinois, Chicago, IL 60612.
Department of Pharmacology, University of Illinois, Chicago, IL 60612
Proc Natl Acad Sci U S A. 2016 Dec 27;113(52):14976-14981. doi: 10.1073/pnas.1609675114. Epub 2016 Dec 12.
Physiological stimuli activate protein kinases for finite periods of time, which is critical for specific biological outcomes. Mimicking this transient biological activity of kinases is challenging due to the limitations of existing methods. Here, we report a strategy enabling transient kinase activation in living cells. Using two protein-engineering approaches, we achieve independent control of kinase activation and inactivation. We show successful regulation of tyrosine kinase c-Src (Src) and Ser/Thr kinase p38α (p38), demonstrating broad applicability of the method. By activating Src for finite periods of time, we reveal how the duration of kinase activation affects secondary morphological changes that follow transient Src activation. This approach highlights distinct roles for sequential Src-Rac1- and Src-PI3K-signaling pathways at different stages during transient Src activation. Finally, we demonstrate that this method enables transient activation of Src and p38 in a specific signaling complex, providing a tool for targeted regulation of individual signaling pathways.
生理刺激在有限的时间内激活蛋白激酶,这对特定的生物学结果至关重要。由于现有方法的局限性,模拟激酶的这种瞬时生物学活性具有挑战性。在此,我们报告了一种在活细胞中实现瞬时激酶激活的策略。通过两种蛋白质工程方法,我们实现了对激酶激活和失活的独立控制。我们展示了对酪氨酸激酶c-Src(Src)和丝氨酸/苏氨酸激酶p38α(p38)的成功调控,证明了该方法的广泛适用性。通过在有限的时间内激活Src,我们揭示了激酶激活的持续时间如何影响瞬时Src激活后随之而来的二级形态变化。这种方法突出了在瞬时Src激活的不同阶段,顺序性的Src-Rac1和Src-PI3K信号通路的不同作用。最后,我们证明该方法能够在特定的信号复合物中瞬时激活Src和p38,为靶向调控单个信号通路提供了一种工具。