Ophthalmic Genetics and Visual Function Branch, National Eye Institute, National Institutes of Health, Bethesda, MD 20892, USA.
Am J Hum Genet. 2010 Sep 10;87(3):400-9. doi: 10.1016/j.ajhg.2010.08.003.
Retinitis pigmentosa (RP) is a phenotypically and genetically heterogeneous group of inherited retinal degenerations characterized clinically by night blindness, progressive constriction of the visual fields, and loss of vision, and pathologically by progressive loss of rod and then cone photoreceptors. Autosomal-recessive RP (arRP) in a consanguineous Pakistani family previously linked to chromosome 2p22.3-p24.1 is shown to result from a homozygous missense mutation (c.1015T>C [p.C339R]) in ZNF513, encoding a presumptive transcription factor. znf513 is expressed in the retina, especially in the outer nuclear layer, inner nuclear layer, and photoreceptors. Knockdown of znf513 in zebrafish reduces eye size, retinal thickness, and expression of rod and cone opsins and causes specific loss of photoreceptors. These effects are rescued by coinjection with wild-type (WT) but not p.C339R-znf513 mRNA. Both normal and p.C339R mutant ZNF513 proteins expressed in COS-7 cells localize to the nucleus. ChIP analysis shows that only the wild-type but not the mutant ZNF513 binds to the Pax6, Sp4, Arr3, Irbp, and photoreceptor opsin promoters. These results suggest that the ZNF513 p.C339R mutation is responsible for RP in this family and that ZNF513 plays a key role in the regulation of photoreceptor-specific genes in retinal development and photoreceptor maintenance.
色素性视网膜炎(RP)是一组表型和遗传异质性的遗传性视网膜变性,临床上表现为夜盲症、视野逐渐缩小和视力丧失,病理上表现为视杆细胞和随后的视锥细胞逐渐丧失。先前与染色体 2p22.3-p24.1 连锁的巴基斯坦近亲结婚家族中的常染色体隐性 RP(arRP),其结果是 ZNF513 的纯合错义突变(c.1015T>C [p.C339R]),该突变编码一个假定的转录因子。znf513 在视网膜中表达,特别是在外核层、内核层和光感受器中。在斑马鱼中敲低 znf513 会导致眼睛变小、视网膜变薄、视杆和视锥视蛋白表达减少,并导致特定的光感受器丧失。这些效应可通过与野生型(WT)但不是 p.C339R-znf513 mRNA 共注射来挽救。在 COS-7 细胞中表达的正常和 p.C339R 突变 ZNF513 蛋白均定位于细胞核。ChIP 分析表明,只有野生型 ZNF513 而不是突变型 ZNF513 结合到 Pax6、Sp4、Arr3、Irbp 和光感受器视蛋白启动子上。这些结果表明,该家族中的 ZNF513 p.C339R 突变是 RP 的原因,并且 ZNF513 在视网膜发育和光感受器维持中的光感受器特异性基因的调节中发挥关键作用。