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光遗传学基因组工程的小鼠模型。

Mouse Model for Optogenetic Genome Engineering.

机构信息

Department of Regenerative Science, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences.

出版信息

Acta Med Okayama. 2022 Feb;76(1):1-5. doi: 10.18926/AMO/63202.

Abstract

Optogenetics, a technology to manipulate biological phenomena thorough light, has attracted much attention in neuroscience. Recently, the Magnet System, a photo-inducible protein dimerization system which can control the intracellular behavior of various biomolecules with high accuracy using light was developed. Furthermore, photoactivation systems for controlling biological phenomena are being developed by combining this technique with genome-editing technology (CRISPR/Cas9 System) or DNA recombination technology (Cre-loxP system). Herein, we review the history of optogenetics and the latest Magnet System technology and introduce our recently developed photoactivatable Cre knock-in mice with temporal-, spatial-, and cell-specific accuracy.

摘要

光遗传学是一种通过光来操纵生物现象的技术,在神经科学领域引起了广泛关注。最近,开发了一种光诱导蛋白二聚化系统——磁体系统(Magnet System),该系统可以使用光精确控制各种生物分子的细胞内行为。此外,通过将该技术与基因组编辑技术(CRISPR/Cas9 系统)或 DNA 重组技术(Cre-loxP 系统)相结合,正在开发用于控制生物现象的光激活系统。本文综述了光遗传学的历史和最新的磁体系统技术,并介绍了我们最近开发的具有时间、空间和细胞特异性的光激活型 Cre 敲入小鼠。

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