CRISPR-Cas A Laboratory Manual

CRISPR-Cas A Laboratory Manual by Jennifer A. Doudna, published by Cold Spring Harbor Laboratory Press in 2016, is a comprehensive resource for researchers interested in the revolutionary CRISPR-Cas technology. This 181-page lab manual provides an in-depth guide to the techniques that enable the editing of nucleic acids and modulation of gene expression with unprecedented speed and accuracy. The manual features contributions from leading experts in the field, offering step-by-step protocols applicable to various biological systems, including yeast, zebrafish, Drosophila, mice, and human pluripotent stem cells.
Readers will find detailed methodologies for designing guide RNAs, preparing and delivering CRISPR-Cas reagents, and screening for genetic modifications. The manual also addresses strategies for optimizing CRISPR-Cas applications while minimizing off-target effects. Additionally, it explores the broader applications of the CRISPR-Cas system, including genome activation and repression, and discusses advancements in next-generation CRISPR-Cas tools. This edition serves as an essential laboratory resource for cell, molecular, and developmental biologists, as well as biochemists and geneticists looking to enhance their biotechnology capabilities.
Official synopsis Publisher
The development of CRISPR-Cas technology is revolutionizing biology. Based on machinery bacteria use to target foreign nucleic acids, these powerful techniques allow investigators to edit nucleic acids and modulate gene expression more rapidly and accurately than ever before.
Featuring contributions from leading figures in the CRISPR-Cas field, this laboratory manual presents a state-of-the-art guide to the technology. It includes step-by-step protocols for applying CRISPR-Cas-based techniques in various systems, including yeast, zebrafish, Drosophila, mice, and cultured cells (e.g., human pluripotent stem cells). The contributors cover web-based tools and approaches for designing guide RNAs that precisely target genes of interest, methods for preparing and delivering CRISPR-Cas reagents into cells, and ways to screen for cells that harbor the desired genetic changes. Strategies for optimizing CRISPR-Cas in each system–especially for minimizing off-target effects–are also provided.
Authors also describe other applications of the CRISPR-Cas system, including its use for regulating genome activation and repression, and discuss the development of next-generation CRISPR-Cas tools. The book is thus an essential laboratory resource for all cell, molecular, and developmental biologists, as well as biochemists, geneticists, and all who seek to expand their biotechnology toolkits.
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