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Updated: Jul 12, 2026

Zygote Microinjection for Creating Gene Cassette Knock-in and Flox Alleles in Mice
Published on: June 24, 2022
CRISPR-mediated precise large fragment insertion in zygotes enables rapid generation of humanized immunoglobulin
Usha Nair1, Madhav Akauliya1, John E Warner1
1Batista Laboratory, The Ragon Institute of Mass General Brigham, Massachusetts Institute of Technology, and Harvard, Cambridge, MA 02139, USA.
Abstract:
Current CRISPR-Cas9 methods are restricted to small genomic edits. We developed a CRISPR-guided approach that enables direct insertion of large genomic sequences into mouse zygotes. We deleted the murine 2.4-Mb immunoglobulin heavy-chain (IgH) variable (VH) locus and then precisely inserted a bacterial artificial chromosome (BAC) containing a 155-kb human VH DNA fragment flanked by 20-kb homology arms. Full-length, single-copy BAC integration occurred without ectopic recombination. Human sequences were stably transmitted and expressed VH segments that recombined with endogenous mouse sequences, and mice exhibited normal B cell development. Upon immunization, human VH-expressing B cells underwent class-switch recombination and somatic hypermutation, secreting antigen-specific antibodies. We demonstrated modular IgH humanization by replacing endogenous mouse diversity and joining (DH-JH) segments with human sequences, producing V(D)J recombination and diverse antibodies. Unlike traditional methods requiring more than a year, this approach enables the generation and validation of mice carrying large genomic insertions within 8 weeks.

