Haider Neena B, Zhang Weidong, Hurd Ron, Ikeda Akihiro, Nystuen Arne M, Naggert Jürgen K, Nishina Patsy M
Department of Genetics, Cell Biology, and Anatomy, University of Nebraska Medical Center, Omaha, Nebraska 68198, USA.
Mamm Genome. 2008 Mar;19(3):145-54. doi: 10.1007/s00335-008-9092-2. Epub 2008 Feb 20.
The retinal degeneration 7 (rd7) mouse, lacking expression of the Nr2e3 gene, exhibits retinal dysplasia and a slow, progressive degeneration due to an abnormal production of blue opsin-expressing cone cells. In this study we evaluated three strains of mice to identify alleles that would slow or ameliorate the retinal degeneration observed in Nr2e3 (rd7/rd7) mice. Our studies reveal that genetic background greatly influences the expression of the Nr2e3 (rd7/rd7) phenotype and that the inbred mouse strains CAST/EiJ, AKR/J, and NOD.NON-H2 (nb1) carry alleles that confer resistance to Nr2e3 (rd7/rd7)-induced retinal degeneration. B6.Cg-Nr2e3 (rd7/rd7) mice were outcrossed to each strain and the F(1) progeny were intercrossed to produce F(2) mice. In each intercross, 20-24% of the total F(2) progeny were homozygous for the Nr2e3 (rd7/rd7) mutation in a mixed genetic background; approximately 28-48% of the Nr2e3 (rd7/rd7) homozygotes were suppressed for the degenerative retina phenotype in a mixed genetic background. The suppressed mice had no retinal spots and normal retinal morphology with a normal complement of blue opsin-expressing cone cells. An initial genome scan revealed a significant association of the suppressed phenotype with loci on chromosomes 8 and 19 with the CAST/EiJ background, two marginal loci on chromosomes 7 and 11 with the AKR/J background, and no significant QTL with the NOD.NON-H2 (nb1) background. We did not observe any significant epistatic effects in this study. Our results suggest that there are several genes that are likely to act in the same or parallel pathway as NR2E3 that can rescue the Nr2e3 (rd7/rd7) phenotype and may serve as potential therapeutic targets.
视网膜变性7(rd7)小鼠缺乏Nr2e3基因的表达,由于表达蓝光视蛋白的视锥细胞产生异常,表现出视网膜发育异常以及缓慢的进行性变性。在本研究中,我们评估了三个小鼠品系,以鉴定能够减缓或改善Nr2e3(rd7/rd7)小鼠中观察到的视网膜变性的等位基因。我们的研究表明,遗传背景对Nr2e3(rd7/rd7)表型的表达有很大影响,近交系小鼠品系CAST/EiJ、AKR/J和NOD.NON-H2(nb1)携带赋予对Nr2e3(rd7/rd7)诱导的视网膜变性抗性的等位基因。将B6.Cg-Nr2e3(rd7/rd7)小鼠与每个品系杂交,F1代后代进行互交以产生F2代小鼠。在每次互交中,在混合遗传背景下,总F2代后代中有20-24%为Nr2e3(rd7/rd7)突变的纯合子;在混合遗传背景下,约28-48%的Nr2e3(rd7/rd7)纯合子的视网膜变性表型受到抑制。受抑制的小鼠没有视网膜斑点,视网膜形态正常,表达蓝光视蛋白的视锥细胞数量正常。初步的基因组扫描显示,在CAST/EiJ背景下,受抑制的表型与8号和19号染色体上的位点有显著关联;在AKR/J背景下,与7号和11号染色体上的两个边缘位点有显著关联;而在NOD.NON-H2(nb1)背景下没有显著的数量性状位点。在本研究中,我们没有观察到任何显著的上位效应。我们的结果表明,有几个基因可能与NR2E3在相同或平行的途径中起作用,能够挽救Nr2e3(rd7/rd7)表型,并可能作为潜在的治疗靶点。