Zentrum für Seltene Netzhauterkrankungen, AugenZentrum Siegburg, MVZ Augenärztliches Diagnostik- und Therapiecentrum Siegburg GmbH, Europaplatz 3, 53721 Siegburg, Germany.
RetinaScience, Postfach 301212, 53192 Bonn, Germany.
Int J Mol Sci. 2021 Feb 19;22(4):2089. doi: 10.3390/ijms22042089.
We present a long-term follow-up in autosomal dominant gyrate atrophy-like choroidal dystrophy (adGALCD) and propose a possible genotype/phenotype correlation. Ophthalmic examination of six patients from two families revealed confluent areas of choroidal atrophy resembling gyrate atrophy, starting in the second decade of life. Progression continued centrally, reaching the fovea at about 60 years of age. Subretinal deposits, retinal pigmentation or choroidal neovascularization as seen in late-onset retinal degeneration (LORD) were not observed. Whole genome sequencing revealed a novel missense variant in the gene (p.(Q180E)) which was found in heterozygous state in all affected subjects. Haplotype analysis showed that this variant found in both families is identical by descent. Three-dimensional modeling of the possible supramolecular assemblies of C1QTNF5 revealed that the p.(Q180E) variant led to the destabilization of protein tertiary and quaternary structures, affecting both the stability of the single protomer and the entire globular head, thus exerting detrimental effects on the formation of C1QTNF5 trimeric globular domains and their interaction. In conclusion, we propose that the p.(Q180E) variant causes a specific phenotype, adGALCD, that differs in multiple clinical aspects from LORD. Disruption of optimal cell-adhesion mechanisms is expected when analyzing the effects of the point mutation at the protein level.
我们对常染色体显性遗传性脑回样脉络膜营养不良(adGALCD)进行了长期随访,并提出了一种可能的基因型-表型相关性。对两个家族的六名患者进行眼科检查,发现脉络膜萎缩呈脑回样,类似于脑回样萎缩,始于二十多岁。病变从中部继续进展,约 60 岁时累及黄斑。未观察到晚期视网膜变性(LORD)中所见的视网膜下沉积物、视网膜色素沉着或脉络膜新生血管形成。全基因组测序显示, 基因(p.(Q180E))存在一个新的错义变异,该变异在所有受影响的个体中均为杂合状态。单体型分析表明,这两个家族中发现的变异是由共同的祖先遗传而来。对 C1QTNF5 可能的超分子组装的三维建模表明,p.(Q180E)变异导致蛋白质三级和四级结构的不稳定性,影响单个原聚体和整个球状头部的稳定性,从而对 C1QTNF5 三聚体球状结构域的形成及其相互作用产生有害影响。总之,我们提出 p.(Q180E)变异导致特定的表型,即 adGALCD,在多个临床方面与 LORD 不同。当在蛋白质水平上分析点突变的影响时,预计会破坏最佳的细胞黏附机制。