Opticool: Cutting-edge transgenic optical tools

Author:

Fenelon Kelli D.,Krause Julia,Koromila TheodoraORCID

Abstract

Only a few short decades have passed since the sequencing of GFP, yet the modern repertoire of transgenically encoded optical tools implies an exponential proliferation of ever improving constructions to interrogate the subcellular environment. A myriad of tags for labeling proteins, RNA, or DNA have arisen in the last few decades, facilitating unprecedented visualization of subcellular components and processes. Development of a broad array of modern genetically encoded sensors allows real-time, in vivo detection of molecule levels, pH, forces, enzyme activity, and other subcellular and extracellular phenomena in ever expanding contexts. Optogenetic, genetically encoded optically controlled manipulation systems have gained traction in the biological research community and facilitate single-cell, real-time modulation of protein function in vivo in ever broadening, novel applications. While this field continues to explosively expand, references are needed to assist scientists seeking to use and improve these transgenic devices in new and exciting ways to interrogate development and disease. In this review, we endeavor to highlight the state and trajectory of the field of in vivo transgenic optical tools.

Funder

University of Texas at Dallas

Publisher

Public Library of Science (PLoS)

Reference231 articles.

1. The era of 3D and spatial genomics;BAM Bouwman;Trends Genet,2022

2. Technological advances in probing 4D genome organization;J Soroczynski;Curr Opin Cell Biol,2023

3. Illuminating Messengers: An Update and Outlook on RNA Visualization in Bacteria;LA Van Gijtenbeek;Front Microbiol,2017

4. Spatially Resolved Transcriptomes—Next Generation Tools for Tissue Exploration;M Asp;Bioessays,2020

5. Temporal modelling using single-cell transcriptomics;J Ding;Nature Reviews Genetics. Nature Publishing Group,2022

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