
Secrets of a fast base editor CRISPR-Cas9 base editors comprise RNA-guided Cas proteins fused to an enzyme that can deaminate a DNA nucleoside. No natural enzyme deaminates adenine in DNA, and so a breakthrough came when a natural transfer RNA deaminase was fused to Cas9 and evolved to give an adenine base editor (ABE) that works on DNA. Further evolution provided the enzyme ABE8e, which catalyzes deamination more than 1000 times faster than early ABEs. Lapinaite et al. now present a 3.2-angstrom resolution structure of ABE8e bound to DNA in which the target adenine is replaced with an analog designed to trap the catalytic conformation. The structure, together with kinetic data comparing ABE8e to earlier ABEs, explains how ABE8e edits DNA bases and could inform future base-editor design. Science , this issue p. 566
Gene Editing, 570, General Science & Technology, Adenosine Deaminase, 1.1 Normal biological development and functioning, Adenine, Escherichia coli Proteins, Cryoelectron Microscopy, DNA, Biological Sciences, Good Health and Well Being, Deamination, CRISPR-Associated Protein 9, Physical Sciences, Genetics, 2.1 Biological and endogenous factors, Biochemistry and Cell Biology, Generic health relevance, CRISPR-Cas Systems
Gene Editing, 570, General Science & Technology, Adenosine Deaminase, 1.1 Normal biological development and functioning, Adenine, Escherichia coli Proteins, Cryoelectron Microscopy, DNA, Biological Sciences, Good Health and Well Being, Deamination, CRISPR-Associated Protein 9, Physical Sciences, Genetics, 2.1 Biological and endogenous factors, Biochemistry and Cell Biology, Generic health relevance, CRISPR-Cas Systems
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| influence This indicator reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically). | Top 10% | |
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