Zhang / Zhou | Opsin-free Optogenetics | Buch | 978-1-032-24922-3 | sack.de

Buch, Englisch, 202 Seiten, Format (B × H): 156 mm x 234 mm, Gewicht: 290 g

Reihe: Methods in Signal Transduction Series

Zhang / Zhou

Opsin-free Optogenetics

Technology and Applications
1. Auflage 2022
ISBN: 978-1-032-24922-3
Verlag: Taylor & Francis Ltd

Technology and Applications

Buch, Englisch, 202 Seiten, Format (B × H): 156 mm x 234 mm, Gewicht: 290 g

Reihe: Methods in Signal Transduction Series

ISBN: 978-1-032-24922-3
Verlag: Taylor & Francis Ltd


Optogenetics represents a breakthrough technology capable of dynamically modulating molecular and cellular activity in live cells with high precision. This transformative technology made it possible to reversibly interrogate protein actions, cellular events, and animal behaviors with a simple flash of light. Manipulating the temporal and spatial profile of light enabled precise control of membrane potentials. This feature has inspired non-opsin-based optogenetics, which not only inherits the precise spatiotemporal resolution but also expands the targets into a diverse pool of biomolecules such as membrane receptors, ion channels, kinases, GTPases, and transcription factors. This book is unique because it emphasizes the design and applications of opsin-free optogenetic tools.



Key Features

- Describes new developments in non-opsin-based optogenetic tools

- Introduces cutting-edge methods for precise modulation of cell signaling

- Highlights applications of optogenetic regulation of cellular functions

- Covers contributions from an international team of leading experts

Related Titles

- Lim, W. & B. Mayer – Cell Signaling (ISBN 9780815342441)

- Ayyanathan, K., ed. – Cancer Cell Signaling: Targeting Signaling Pathways Toward Therapeutic Approaches to Cancer (ISBN 9781774630839)

- Zhang, J. et al., eds. – Optical Probes in Biology (ISBN 9781138199934)

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Postgraduate and Professional


Autoren/Hrsg.


Weitere Infos & Material


Table of Content

Chapter 1

Optogenetic dissection of a two-component calcium influx pathway

Xiaoxuan Liu, Yingshan Wang, Yubin Zhou, and Guolin Ma*

Chapter 2

High-throughput engineering of a light-activatable Ca2+ channel

Lian He*, Liuqing Wang, and Youjun Wang*

Chapter 3

Optogenetic activation of TrkB signaling

Peiyuan Huang, Zhihao Zhao, Lei Lei, and Liting Duan*

Chapter 4

Spatiotemporal modulation of neural repair

Huaxun Fan, Qin Wang, Kai Zhang*, and Yuanquan Song*

Chapter 5

Optogenetic control of neural stem cell differentiation

Yixun Su, Taida Huang, Kai Zhang, and Chenju Yi*

Chapter 6

An optogenetic toolbox for remote control of programmed cell death

Ningxia Zhang and Ji Jing*

Chapter 7

Control of protein levels in Saccharomyces cerevisiae by optogenetic modules that act on protein synthesis and stability

Sophia Hasenjäger, Jonathan Trauth, and Christof Taxis*

Chapter 8

Optogenetics as a tool to study neurodegeneration and signal transduction

Prabhat Tiwari* and Nicholas S. Tolwinski*

Chapter 9

Opsin-free optogenetics: brain and beyond

Jongryul Hong, Yeonji Jeong, and Won Do Heo*

Chapter 10

Constructing a far-red light-induced split-Cre recombinase system for controllable genome engineering

Meiyan Wang, Jiali Wu, and Haifeng Ye*

Chapter 11

Tools and Technologies for Wireless and Non-invasive Optogenetics

Guangfu Wu, Vagif Abdulla, Yiyuan Yang, Michael Schneider, and Yi Zhang*


Yubin Zhou, Kai Zhang



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