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Recent advances in the optical control of protein function through genetic code expansion

机译:通过遗传密码扩展,蛋白质功能光学控制的最新进展

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In nature, biological processes are regulated with precise spatial and temporal resolution at the molecular, cellular, and organismal levels. In order to perturb and manipulate these processes, optically controlled chemical tools have been developed and applied in living systems. The use of light as an external trigger provides spatial and temporal control with minimal adverse effects. Incorporation of light-responsive amino acids into proteins in cells and organisms with an expanded genetic code has enabled the precise activation/deactivation of numerous, diverse proteins, such as kinases, nucleases, proteases, and polymerases. Using unnatural amino acids to generate light-triggered proteins enables a rational engineering approach that is based on mechanistic and/or structural information. This review focuses on the most recent developments in the field, including technological advances and biological applications.
机译:本质上,在分子,细胞和有机体水平下,用精确的空间和时间分辨率调节生物过程。 为了扰乱和操纵这些过程,已经开发了光学控制的化学工具和应用于生活系统。 用光作为外部触发器提供空间和时间控制,具有最小的不利影响。 将光响应氨基酸掺入细胞和具有膨胀遗传密码的生物体中的蛋白质,使得许多不同的蛋白质的精确激活/去激活,例如激酶,核酸酶,蛋白酶和聚合酶。 使用不自然的氨基酸产生光触发的蛋白质,使得基于机械和/或结构信息的理性工程方法。 本综述重点介绍该领域最近的发展,包括技术进步和生物应用。

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