Godino R F, Fernández A I
Department of Ophthalmology, Ocular Genomics Institute-Harvard Medical School, MEEI, Boston, MA. USA.
Dpto Biotecnología1 y Mejora Genética2, INIA. Madrid, Spain.
Postdoc J. 2016 Sep;4(9):15-19. doi: 10.14304/surya.jpr.v4n9.3.
(Myxovirus (Influenza virus) resistance 1, interferon-inducible protein p78) gene has been implicated in the resistance to a wide range of RNA viruses including influenza A in several species such as . In the present study a 28-bp deletion in exon 14 of the gene has been identified in Iberian domestic pigs but not in other domestic breeds neither in wild boars. The mutation produces a frameshift giving a protein with 6 amino acid substitutions and the extension of the C-terminal region with additional 20 amino acids with respect to the wild type MX1 protein. The new allelic polymorphism affects the antiviral domain of the MX1 protein and therefore might impact its anti-influenza virus activity. It has been demonstrated that polymorphisms in the murine locus, affect the survival rate of mice upon experimental infection with influenza virus. It might be possible to improve the innate resistance of pigs to influenza virus infection by determining the porcine alleles with more potent antiviral activity and genetically selecting animals bearing such alleles.
(黏液病毒(流感病毒)抗性1,干扰素诱导蛋白p78)基因与包括甲型流感病毒在内的多种RNA病毒的抗性有关,在多个物种中均有体现,如……在本研究中,在伊比利亚家猪中鉴定出该基因第14外显子存在一个28碱基对的缺失,但在其他家猪品种和野猪中均未发现。该突变导致移码,产生一种蛋白质,与野生型MX1蛋白相比,有6个氨基酸替换,且C末端区域延长了20个氨基酸。新的等位基因多态性影响MX1蛋白的抗病毒结构域,因此可能会影响其抗流感病毒活性。已经证明,小鼠该基因座的多态性会影响小鼠在实验感染流感病毒后的存活率。通过确定具有更强抗病毒活性的猪等位基因并对携带此类等位基因的动物进行基因选择,有可能提高猪对流感病毒感染的先天抗性。