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Dishevelled-3 conformation dynamics analyzed by FRET-based biosensors reveals a key role of casein kinase 1

机译:通过基于FRET的生物传感器分析的Dishevelled-3构象动力学揭示了酪蛋白激酶1的关键作用

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Dishevelled (DVL) is the key component of the Wnt signaling pathway. Currently, DVL conformational dynamics under native conditions is unknown. To overcome this limitation, we develop the Fluorescein Arsenical Hairpin Binder- (FlAsH-) based FRET in vivo approach to study DVL conformation in living cells. Using this single-cell FRET approach, we demonstrate that (i) Wnt ligands induce open DVL conformation, (ii) DVL variants that are predominantly open, show more even subcellular localization and more efficient membrane recruitment by Frizzled (FZD) and (iii) Casein kinase 1 ? (CK1?) has a key regulatory function in DVL conformational dynamics. In silico modeling and in vitro biophysical methods explain how CK1?-specific phosphorylation events control DVL conformations via modulation of the PDZ domain and its interaction with DVL C-terminus. In summary, our study describes an experimental tool for DVL conformational sampling in living cells and elucidates the essential regulatory role of CK1? in DVL conformational dynamics.
机译:Disheveled(DVL)是Wnt信号通路的关键组成部分。当前,在天然条件下的DVL构象动力学是未知的。为克服此限制,我们开发了基于荧光素砷发夹结合剂(FlAsH-)的FRET体内方法来研究活细胞中的DVL构象。使用这种单细胞FRET方法,我们证明(i)Wnt配体诱导开放的DVL构象,(ii)主要开放的DVL变体,显示出更均匀的亚细胞定位和更有效的膜卷曲(FZD)和(iii)募集膜酪蛋白激酶1? (CK1?)在DVL构象动力学中具有关键的调节功能。在计算机模拟和体外生物物理方法中解释了CK1β特异的磷酸化事件如何通过调节PDZ域及其与DVL C末端的相互作用来控制DVL构象。总而言之,我们的研究描述了一种在活细胞中进行DVL构象采样的实验工具,并阐明了CK1的基本调控作用。在DVL构象动力学中。

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