University of North Carolina at Chapel Hill, Department of Biochemistry and Biophysics, Campus Box #7260, 120 Mason Farm Road, Suite 3010, Chapel Hill, NC, 27599-7260, USA.
University of North Carolina at Chapel Hill, Department of Pharmacology, Campus Box #7260, 120 Mason Farm Road, Suite 4010, Chapel Hill, NC, 27599-7260, USA.
Chembiochem. 2018 Jun 18;19(12):1319-1325. doi: 10.1002/cbic.201700681. Epub 2018 Apr 6.
Cellular signal transduction is often regulated at multiple steps to achieve more complex logic or precise control of a pathway. For instance, some signaling mechanisms couple allosteric activation with localization to achieve high signal to noise. Here, we create a system for light-activated nuclear import that incorporates two levels of control. It consists of a nuclear import photoswitch, light-activated nuclear shuttle (LANS), and a protein engineered to preferentially interact with LANS in the dark, Zdk2. First, Zdk2 is tethered to a location in the cytoplasm that sequesters LANS in the dark. Second, LANS incorporates a nuclear localization signal (NLS) that is sterically blocked from binding to the nuclear import machinery in the dark. If activated with light, LANS both dissociates from its tethered location and exposes its NLS, which leads to nuclear accumulation. We demonstrate that this coupled system improves the dynamic range of LANS in mammalian cells, yeast, and Caenorhabditis elegans and provides tighter control of transcription factors that have been fused to LANS.
细胞信号转导通常在多个步骤中受到调节,以实现更复杂的逻辑或对途径的精确控制。例如,一些信号机制将变构激活与定位偶联起来,以实现高信噪比。在这里,我们创建了一个光激活核导入系统,该系统包含两个控制层次。它由一个核导入光开关、光激活核穿梭器 (LANS) 和一种经过工程改造以优先与黑暗中的 LANS 相互作用的蛋白质组成,Zdk2。首先,Zdk2 被束缚在细胞质中的一个位置,该位置将 LANS 在黑暗中隔离。其次,LANS 包含一个核定位信号 (NLS),该信号在黑暗中被空间位阻阻止与核导入机制结合。如果被光激活,LANS 既从其连接的位置解离,又暴露其 NLS,从而导致核积累。我们证明,这种偶联系统提高了哺乳动物细胞、酵母和秀丽隐杆线虫中 LANS 的动态范围,并提供了对与 LANS 融合的转录因子的更严格控制。