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Engineering light-inducible nuclear localization signals for precise spatiotemporal control of protein dynamics in living cells

机译:工程光诱导核定位信号,用于精确时空控制活细胞中蛋白质动力学

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摘要

The function of many eukaryotic proteins is regulated by highly dynamic changes in their nucleocytoplasmic distribution. The ability to precisely and reversibly control nuclear translocation would, therefore, allow dissecting and engineering cellular networks. Here we develop a genetically encoded, light-inducible nuclear localization signal (LINuS) based on the LOV2 domain of Avena sativa phototropin 1. LINuS is a small, versatile tag, customizable for different proteins and cell types. LINuS-mediated nuclear import is fast and reversible, and can be tuned at different levels, for instance, by introducing mutations that alter AsLOV2 domain photo-caging properties or by selecting nuclear localization signals (NLSs) of various strengths. We demonstrate the utility of LINuS in mammalian cells by controlling gene expression and entry into mitosis with blue light.RI Eils, Roland/B-6121-2009
机译:许多真核蛋白的功能受到其核质分布高度动态变化的调节。因此,精确且可逆地控制核易位的能力将允许解剖和工程化蜂窝网络。在这里,我们基于Avena sativa phototropin 1的LOV2结构域,开发了一种遗传编码的光诱导核定位信号(LINuS)。LINuS是一个小型通用标签,可针对不同的蛋白质和细胞类型进行定制。 LINuS介导的核输入是快速且可逆的,并且可以在不同的水平上进行调节,例如,通过引入改变AsLOV2域光诱变性质的突变或通过选择各种强度的核定位信号(NLS)。我们通过控制基因表达和蓝光进入有丝分裂证明了LINuS在哺乳动物细胞中的效用.RI Eils,Roland / B-6121-2009

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