Research Division, Crystal Bioscience Inc., Emeryville, CA 94608.
Proc Natl Acad Sci U S A. 2013 Dec 10;110(50):20170-5. doi: 10.1073/pnas.1317106110. Epub 2013 Nov 26.
Gene targeting by homologous recombination or by sequence-specific nucleases allows the precise modification of genomes and genes to elucidate their functions. Although gene targeting has been used extensively to modify the genomes of mammals, fish, and amphibians, a targeting technology has not been available for the avian genome. Many of the principles of humoral immunity were discovered in chickens, yet the lack of gene targeting technologies in birds has limited biomedical research using this species. Here we describe targeting the joining (J) gene segment of the chicken Ig heavy chain gene by homologous recombination in primordial germ cells to establish fully transgenic chickens carrying the knockout. In homozygous knockouts, Ig heavy chain production is eliminated, and no antibody response is elicited on immunization. Migration of B-lineage precursors into the bursa of Fabricius is unaffected, whereas development into mature B cells and migration from the bursa are blocked in the mutants. Other cell types in the immune system appear normal. Chickens lacking the peripheral B-cell population will provide a unique experimental model to study avian immune responses to infectious disease. More generally, gene targeting in avian primordial germ cells will foster advances in diverse fields of biomedical research such as virology, stem cells, and developmental biology, and provide unique approaches in biotechnology, particularly in the field of antibody discovery.
通过同源重组或序列特异性核酸酶进行基因靶向,可以精确修饰基因组和基因,以阐明它们的功能。尽管基因靶向已被广泛用于修饰哺乳动物、鱼类和两栖类动物的基因组,但针对禽类基因组的靶向技术尚未开发出来。许多体液免疫的原理都是在鸡身上发现的,但禽类中缺乏基因靶向技术限制了使用这种物种进行的生物医学研究。在这里,我们描述了通过同源重组在原始生殖细胞中靶向鸡 Ig 重链基因的 J 基因片段,以建立携带敲除的完全转基因鸡。在纯合敲除中,Ig 重链的产生被消除,免疫接种不会引起抗体反应。B 细胞前体进入法氏囊的迁移不受影响,而在突变体中,B 细胞发育成熟和从法氏囊中迁移被阻断。免疫系统中的其他细胞类型似乎正常。缺乏外周 B 细胞群体的鸡将提供一个独特的实验模型,用于研究禽类对传染病的免疫反应。更广泛地说,禽类原始生殖细胞中的基因靶向将促进病毒学、干细胞和发育生物学等生物医学研究领域的进展,并为生物技术,特别是抗体发现领域提供独特的方法。