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Genetic Resistance to Avian Leukosis Viruses Induced by CRISPR/Cas9 Editing of Specific Receptor Genes in Chicken Cells

机译:CRISPR / Cas9编辑对鸡细胞中特定受体基因的诱导对禽白血病病毒的遗传抗性

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摘要

Avian leukosis viruses (ALVs), which are pathogens of concern in domestic poultry, utilize specific receptor proteins for cell entry that are both necessary and sufficient for host susceptibility to a given ALV subgroup. This unequivocal relationship offers receptors as suitable targets of selection and biotechnological manipulation with the aim of obtaining virus-resistant poultry. This approach is further supported by the existence of natural knock-outs of receptor genes that segregate in inbred lines of chickens. We used CRISPR/Cas9 genome editing tools to introduce frame-shifting indel mutations into tva, tvc, and tvj loci encoding receptors for the A, C, and J ALV subgroups, respectively. For all three loci, the homozygous frame-shifting indels generating premature stop codons induced phenotypes which were fully resistant to the virus of respective subgroup. In the tvj locus, we also obtained in-frame deletions corroborating the importance of W38 and the four amino-acids preceding it. We demonstrate that CRISPR/Cas9-mediated knock-out or the fine editing of ALV receptor genes might be the first step in the development of virus-resistant chickens.
机译:禽白血病病毒(ALV)是家禽中令人关注的病原体,它利用特定的受体蛋白进入细胞,这对于宿主对给定的ALV亚群的敏感性既必要又充分。这种明确的关系将受体作为选择和生物技术操作的合适目标,以期获得抗病毒家禽。分离在鸡近交系中的受体基因的天然敲除进一步支持了这种方法。我们使用CRISPR / Cas9基因组编辑工具分别向A,C和J ALV亚组的tva,tvc和tvj基因座编码受体中引入了移码indel突变。对于所有三个基因座,产生过早终止密码子的纯合移码插入缺失诱导表型,其完全抵抗相应亚组的病毒。在tvj基因座中,我们还获得了框内缺失,证实了W38及其之前的四个氨基酸的重要性。我们证明了CRISPR / Cas9介导的敲除或ALV受体基因的精细编辑可能是抗病毒鸡发展的第一步。

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