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A red/far-red light-responsive bi-stable toggle switch to control gene expression in mammalian cells

机译:红色/远红色光响应性双稳态拨动开关可控制哺乳动物细胞中的基因表达

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摘要

Growth and differentiation of multicellular systems is orchestrated by spatially restricted gene expression programs in specialized subpopulations. The targeted manipulation of such processes by synthetic tools with high-spatiotemporal resolution could, therefore, enable a deepened understanding of developmental processes and open new opportunities in tissue engineering. Here, we describe the first red/far-red light-triggered gene switch for mammalian cells for achieving gene expression control in time and space. We show that the system can reversibly be toggled between stable on- and off-states using short light pulses at 660 or 740 nm. Red light-induced gene expression was shown to correlate with the applied photon number and was compatible with different mammalian cell lines, including human primary cells. The light-induced expression kinetics were quantitatively analyzed by a mathematical model. We apply the system for the spatially controlled engineering of angiogenesis in chicken embryos. The system’s performance combined with cell- and tissue-compatible regulating red light will enable unprecedented spatiotemporally controlled molecular interventions in mammalian cells, tissues and organisms.
机译:多细胞系统的生长和分化通过专门的亚群中受空间限制的基因表达程序来协调。因此,通过具有高时空分辨率的合成工具对此类过程进行有针对性的操纵,可以加深对发育过程的了解,并为组织工程学提供新的机会。在这里,我们描述了第一个红色/远红色触发的哺乳动物细胞的基因开关,以实现在时间和空间上的基因表达控制。我们表明,该系统可以使用660或740 nm的短光脉冲可逆地在稳定的打开和关闭状态之间切换。已显示红光诱导的基因表达与所施加的光子数相关,并且与包括人原代细胞在内的不同哺乳动物细胞系兼容。通过数学模型定量分析了光诱导的表达动力学。我们将系统应用于鸡胚血管生成的空间控制工程。该系统的性能与细胞和组织相容的调节红光相结合,将实现对哺乳动物细胞,组织和生物体的空前时空控制的分子干预。

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