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反求笼合物:在生物学中应用的设计原理。

Reverse Engineering Caged Compounds: Design Principles for their Application in Biology.

机构信息

Department of Neuroscience, Icahn School of Medicine at Mount Sinai, (Previously, Mount Sinai School of Medicine), 10029, New York, NY, USA.

出版信息

Angew Chem Int Ed Engl. 2023 Feb 20;62(9):e202206083. doi: 10.1002/anie.202206083. Epub 2023 Jan 16.

Abstract

Light passes through biological tissue, and so it is used for imaging biological processes in situ. Such observation is part of the very essence of science, but mechanistic understanding requires intervention. For more than 50 years a "second function" for light has emerged; namely, that of photochemical control. Caged compounds are biologically inert signaling molecules that are activated by light. These optical probes enable external instruction of biological processes by stimulation of an individual element in complex signaling cascades in its native environment. Cause and effect are linked directly in spatial, temporal, and frequency domains in a quantitative manner by their use. I provide a guide to the basic properties required to make effective caged compounds for the biological sciences.

摘要

光穿透生物组织,因此被用于对生物过程进行原位成像。这种观察是科学本质的一部分,但机械理解需要干预。50 多年来,光出现了“第二种功能”;即光化学控制。笼状化合物是生物惰性的信号分子,可被光激活。这些光学探针通过在其天然环境中刺激复杂信号级联中的单个元件,使生物过程的外部指令成为可能。通过使用这些光学探针,在空间、时间和频率域中以定量的方式直接将因果关系联系起来。我为制作生物科学有效笼状化合物所需的基本性质提供了指导。

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