Generation of a tyrosine hydroxylase-2A-Cre knockin non-human primate model by homology-directed-repair-biased CRISPR genome editing

通过同源定向修复偏向的 CRISPR 基因组编辑生成酪氨酸羟化酶-2A-Cre 敲入非人灵长类动物模型

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作者:Sho Yoshimatsu, Junko Okahara, Junko Yoshie, Yoko Igarashi, Ryusuke Nakajima, Tsukasa Sanosaka, Emi Qian, Tsukika Sato, Hiroya Kobayashi, Satoru Morimoto, Noriyuki Kishi, Devin M Pillis, Punam Malik, Toshiaki Noce, Hideyuki Okano

Abstract

Non-human primates (NHPs) are the closest animal model to humans; thus, gene engineering technology in these species holds great promise for the elucidation of higher brain functions and human disease models. Knockin (KI) gene targeting is a versatile approach to modify gene(s) of interest; however, it generally suffers from the low efficiency of homology-directed repair (HDR) in mammalian cells, especially in non-expressed gene loci. In the current study, we generated a tyrosine hydroxylase (TH)-2A-Cre KI model of the common marmoset monkey (marmoset; Callithrix jacchus) using an HDR-biased CRISPR-Cas9 genome editing approach using Cas9-DN1S and RAD51. This model should enable labeling and modification of a specific neuronal lineage using the Cre-loxP system. Collectively, the current study paves the way for versatile gene engineering in NHPs, which may be a significant step toward further biomedical and preclinical applications.

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