Votruba M, Payne A, Moore A T, Bhattacharya S S
Department of Molecular Genetics, Institute of Ophthalmology, University College London, 11-43, Bath Street, London EC1V 9EL, UK.
Mamm Genome. 1998 Oct;9(10):784-7. doi: 10.1007/s003359900867.
Autosomal dominant optic atrophy (OPA1) maps to Chromosome (Chr) 3q28, and the disease interval has been refined to within 1.4 cM, flanked by the markers D3S3669 and D3S3562. HRY, the human homolog of the Drosophila segmentation gene, hairy, maps by in situ hybridization to the chromosomal region 3q28-q29. We screened for mutations in HRY in 36 patients from 18 pedigrees with dominant optic atrophy and a group of normal control individuals. Heteroduplex mutation analysis and direct sequencing of all four coding exons and one upstream putative untranslated exon were performed. No disease-associated sequence alterations were identified. A polymorphism in the untranslated region of exon 2 was found, with four alleles. PCR amplification of this part of exon 2 in four of the pedigrees affected by autosomal dominant optic atrophy mapping to chromosome 3q, followed by haplotype analysis, showed recombination between HRY and OPA1 in one pedigree. This allows us to genetically position HRY in relation to known microsatellite markers in the region, placing HRY telomeric to marker D3S3562 and centromeric to D3S1305. This is outside the published critical disease interval for dominant optic atrophy. We have, therefore, excluded HRY as the gene for dominant optic atrophy by sequence analysis, mapped it genetically, and identified a polymorphism in our population.
常染色体显性遗传性视神经萎缩(OPA1)定位于3号染色体(Chr)3q28,疾病区间已被缩小至1.4厘摩以内,两侧分别为标记D3S3669和D3S3562。HRY是果蝇分节基因hairy的人类同源物,通过原位杂交定位于染色体区域3q28 - q29。我们在来自18个家系的36例显性视神经萎缩患者以及一组正常对照个体中筛查了HRY的突变。对所有四个编码外显子和一个上游假定的非翻译外显子进行了异源双链突变分析和直接测序。未发现与疾病相关的序列改变。在第2外显子的非翻译区发现了一个多态性,有四个等位基因。对定位于3号染色体3q的四个常染色体显性遗传性视神经萎缩家系的该部分第2外显子进行PCR扩增,随后进行单倍型分析,结果显示在一个家系中HRY与OPA1之间发生了重组。这使我们能够从遗传学角度确定HRY相对于该区域已知微卫星标记的位置,将HRY定位在标记D3S3562的端粒侧和D3S1305的着丝粒侧。这位于已发表的显性视神经萎缩关键疾病区间之外。因此,我们通过序列分析排除了HRY作为显性视神经萎缩的致病基因,对其进行了遗传学定位,并在我们的人群中鉴定出了一个多态性。