The CRISPR tool kit for genome editing and beyond

Инструментарий CRISPR для редактирования генома и не только
Mazhar Adli
2018-05-09

CRISPR-Cas9catalytically impaired inactive Cas9chromatin engineeringepigenetic editinggene regulation
CRISPR is becoming an indispensable tool in biological research. Once known as the bacterial immune system against invading viruses, the programmable capacity of the Cas9 enzyme is now revolutionizing diverse fields of medical research, biotechnology, and agriculture. CRISPR-Cas9 is no longer just a gene-editing tool; the application areas of catalytically impaired inactive Cas9, including gene regulation, epigenetic editing, chromatin engineering, and imaging, now exceed the gene-editing functionality of WT Cas9. Here, we will present a brief history of gene-editing tools and describe the wide range of CRISPR-based genome-targeting tools. We will conclude with future directions and the broader impact of CRISPR technologies.
1
CRISPR-Cas9 has transformed from a bacterial immune system component into an indispensable, programmable tool across biological research.
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Catalytically impaired (inactive) Cas9 applications—gene regulation, epigenetic editing, chromatin engineering, and imaging—now exceed wild-type Cas9 gene-editing functionality.
3
The article outlines future directions and broader impacts of CRISPR technologies on medical research, biotechnology, and agriculture.
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The paper surveys a wide range of CRISPR-based genome-targeting tools, situating them in the history of gene-editing technologies.

CRISPR toolkit (CRISPR-Cas systems and derived molecular tools) for genome targeting and manipulation

Range of applications and functionalities of CRISPR tools including genome editing, catalytically inactive Cas9 uses (gene regulation, epigenetic editing, chromatin engineering, imaging), historical development, and future directions

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2018-05-09
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Mazhar Adli
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