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光感受器工程指南。

Guidelines for Photoreceptor Engineering.

作者信息

Ziegler Thea, Schumacher Charlotte Helene, Möglich Andreas

机构信息

Institut für Biologie, Biophysikalische Chemie, Humboldt-Universität zu Berlin, Berlin, Germany.

Lehrstuhl für Biochemie, Universität Bayreuth, Universitätstraße 30, Bldg. NW III, 95440, Bayreuth, Germany.

出版信息

Methods Mol Biol. 2016;1408:389-403. doi: 10.1007/978-1-4939-3512-3_27.

Abstract

Sensory photoreceptors underpin optogenetics by mediating the noninvasive and reversible perturbation of living cells by light with unprecedented temporal and spatial resolution. Spurred by seminal optogenetic applications of natural photoreceptors, the engineering of photoreceptors has recently garnered wide interest and has led to the construction of a broad palette of novel light-regulated actuators. Photoreceptors are modularly built of photosensors that receive light signals, and of effectors that carry out specific cellular functions. These modules have to be precisely connected to allow efficient communication, such that light stimuli are relayed from photosensor to effector. The engineering of photoreceptors benefits from a thorough understanding of the underlying signaling mechanisms. This chapter gives a brief overview of key characteristics and signal-transduction mechanisms of sensory photoreceptors. Adaptation of these concepts in photoreceptor engineering has enabled the generation of novel optogenetic tools that greatly transcend the repertoire of natural photoreceptors.

摘要

感觉光感受器通过介导光对活细胞进行无创且可逆的扰动,以前所未有的时间和空间分辨率支撑着光遗传学。受天然光感受器开创性光遗传学应用的推动,光感受器工程最近引起了广泛关注,并导致构建了一系列新型光调节致动器。光感受器由接收光信号的光传感器和执行特定细胞功能的效应器模块化构建而成。这些模块必须精确连接以实现高效通信,从而使光刺激从光传感器传递到效应器。光感受器工程受益于对潜在信号传导机制的深入理解。本章简要概述了感觉光感受器的关键特征和信号转导机制。这些概念在光感受器工程中的应用使得能够生成新型光遗传学工具,这些工具极大地超越了天然光感受器的范围。

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