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可诱导的生殖细胞消融鸡模型用于制备高级生殖系嵌合体。

An inducible germ cell ablation chicken model for high-grade germline chimeras.

机构信息

Division of Research and Development, Setsuro Tech Inc., Tokushima 770-8503, Japan.

Laboratory for Embryology, Institute for Advanced Medical Sciences, Tokushima University, Tokushima 770-8503, Japan.

出版信息

Development. 2023 Sep 15;150(18). doi: 10.1242/dev.202079. Epub 2023 Sep 25.

Abstract

Chicken embryos are a powerful and widely used animal model in developmental biology studies. Since the development of CRISPR technology, gene-edited chickens have been generated by transferring primordial germ cells (PGCs) into recipients after genetic modifications. However, low inheritance caused by competition between host germ cells and the transferred cells is a common complication and greatly reduces production efficiency. Here, we generated a gene-edited chicken, in which germ cells can be ablated in a drug-dependent manner, as recipients for gene-edited PGC transfer. We used the nitroreductase/metronidazole (NTR/Mtz) system for cell ablation, in which nitroreductase produces cytotoxic alkylating agents from administered metronidazole, causing cell apoptosis. The chicken Vasa homolog (CVH) gene locus was used to drive the expression of the nitroreductase gene in a germ cell-specific manner. In addition, a fluorescent protein gene, mCherry, was also placed in the CVH locus to visualize the PGCs. We named this system 'germ cell-specific autonomous removal induction' (gSAMURAI). gSAMURAI chickens will be an ideal recipient to produce offspring derived from transplanted exogenous germ cells.

摘要

鸡胚胎是发育生物学研究中一种强大且广泛应用的动物模型。自 CRISPR 技术发展以来,通过将原始生殖细胞(PGCs)在遗传修饰后转移到受体中,已经产生了基因编辑鸡。然而,由于宿主生殖细胞与转移细胞之间的竞争导致的低遗传率是一个常见的并发症,极大地降低了生产效率。在这里,我们生成了一种基因编辑鸡,其生殖细胞可以通过依赖药物的方式被消融,作为基因编辑 PGC 转移的受体。我们使用硝基还原酶/甲硝唑(NTR/Mtz)系统进行细胞消融,其中硝基还原酶从给予的甲硝唑中产生细胞毒性烷化剂,导致细胞凋亡。鸡 Vasa 同源物(CVH)基因座被用于以生殖细胞特异性的方式驱动硝基还原酶基因的表达。此外,一个荧光蛋白基因 mCherry 也被放置在 CVH 基因座中,以可视化 PGCs。我们将这个系统命名为“生殖细胞特异性自主去除诱导”(gSAMURAI)。gSAMURAI 鸡将是一种理想的受体,可以产生源自移植外源生殖细胞的后代。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a48a/10560566/91df413dc410/develop-150-202079-g1.jpg

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