University College London Institute of Ophthalmology, London, UK.
Hum Mutat. 2013 Mar;34(3):506-14. doi: 10.1002/humu.22264. Epub 2013 Jan 17.
In one consanguineous family with retinitis pigmentosa (RP), a condition characterized by progressive visual loss due to retinal degeneration, homozygosity mapping, and candidate gene sequencing suggested a novel locus. Exome sequencing identified a homozygous frameshifting mutation, c.601delG, p.Lys203Argfs*28, in RP1L1 encoding RP 1-like1, a photoreceptor-specific protein. A screen of a further 285 unrelated individuals with autosomal recessive RP identified an additional proband, homozygous for a missense variant, c.1637G>C, p.Ser546Thr, in RP1L1. A distinct retinal disorder, occult macular dystrophy (OCMD) solely affects the central retinal cone photoreceptors and has previously been reported to be associated with variants in the same gene. The association between mutations in RP1L1 and the disorder OCMD was explored by screening a cohort of 28 unrelated individuals with the condition; 10 were found to harbor rare (minor allele frequency ≤0.5% in the 1,000 genomes dataset) heterozygous RP1L1 missense variants. Analysis of family members revealed many unaffected relatives harboring the same variant. Linkage analysis excluded the possibility of a recessive mode of inheritance, and sequencing of RP1, a photoreceptor protein that interacts with RP1L1, excluded a digenic mechanism involving this gene. These findings imply an important and diverse role for RP1L1 in human retinal physiology and disease.
在一个有视网膜色素变性(RP)的近亲家族中,该病症的特征是由于视网膜变性导致视力逐渐丧失。通过同系基因作图和候选基因测序,提示存在一个新的基因座。外显子组测序发现了一个纯合移码突变,c.601delG,p.Lys203Argfs*28,位于编码 RP 1 样 1 的 RP1L1 基因中,该基因是一种感光器特异性蛋白。在进一步的 285 名常染色体隐性遗传 RP 无关个体的筛查中,发现了另一名先证者,携带 RP1L1 基因中的错义变体 c.1637G>C,p.Ser546Thr,为纯合状态。一种明显的视网膜疾病,隐匿性黄斑营养不良(OCMD)仅影响中心视网膜圆锥感光器,此前曾报道与同一基因中的变体有关。通过对 28 名具有该疾病的无关联个体进行筛查,探讨了 RP1L1 基因突变与 OCMD 之间的关联;发现 10 名个体携带有罕见的(在 1000 基因组数据集的次要等位基因频率≤0.5%)RP1L1 错义变体的杂合状态。对家族成员的分析表明,许多未受影响的亲属携带有相同的变体。连锁分析排除了隐性遗传模式的可能性,并且与 RP1L1 相互作用的感光器蛋白 RP1 的测序排除了涉及该基因的双基因机制。这些发现表明 RP1L1 在人类视网膜生理学和疾病中具有重要且多样化的作用。