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RP2 and RPGR Mutations and Clinical Correlations in Patients with X-Linked Retinitis Pigmentosa

机译:X连锁性视网膜色素变性患者的RP2和RPGR突变及其临床相关性

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摘要

We determined the mutation spectrum of the RP2 and RPGR genes in patients with X-linked retinitis pigmentosa (XLRP) and searched for correlations between categories of mutation and severity of disease. We screened 187 unrelated male patients for mutations, including 135 with a prior clinical diagnosis of XLRP, 11 with probable XLRP, 30 isolate cases suspected of having XLRP, and 11 with cone-rod degeneration. Mutation screening was performed by single-strand conformation analysis and by sequencing of all RP2 exons and RPGR exons 1–14, ORF15, and 15a. The refractive error, visual acuity, final dark-adapted threshold, visual field area, and 30-Hz cone electroretinogram (ERG) amplitude were measured in each patient. Among the 187 patients, we found 10 mutations in RP2, 2 of which are novel, and 80 mutations in RPGR, 41 of which are novel; 66% of the RPGR mutations were within ORF15. Among the 135 with a prior clinical diagnosis of XLRP, mutations in the RP2 and RPGR genes were found in 9 of 135 (6.7%) and 98 of 135 (72.6%), respectively, for a total of 79% of patients. Patients with RP2 mutations had, on average, lower visual acuity but similar visual field area, final dark-adapted threshold, and 30-Hz ERG amplitude compared with those with RPGR mutations. Among patients with RPGR mutations, those with ORF15 mutations had, on average, a significantly larger visual field area and a borderline larger ERG amplitude than did patients with RPGR mutations in exons 1–14. Among patients with ORF15 mutations, regression analyses showed that the final dark-adapted threshold became lower (i.e., closer to normal) and that the 30-Hz ERG amplitude increased as the length of the wild-type ORF15 amino acid sequence increased. Furthermore, as the length of the abnormal amino acid sequence following ORF15 frameshift mutations increased, the severity of disease increased.
机译:我们确定了X连锁性色素性视网膜炎(XLRP)患者的RP2和RPGR基因的突变谱,并研究了突变类别与疾病严重程度之间的相关性。我们筛查了187位无亲缘关系的男性患者的突变,包括135例先前临床诊断为XLRP的突变,11例可能的XLRP的突变,30例疑似患有XLRP的分离病例以及11例视锥变性的患者。通过单链构象分析并对所有RP2外显子和RPGR外显子1-14,ORF15和15a进行测序,进行突变筛选。测量每位患者的屈光不正,视敏度,最终暗适应阈值,视野面积和30 Hz锥形视网膜电图(ERG)振幅。在这187例患者中,我们发现RP2有10个突变,其中2个是新突变,RPGR有80个突变,其中41个是新突变。 66%的RPGR突变位于ORF15内。在135名先前已被XLRP临床诊断过的患者中,分别在135名患者中的9名(6.7%)和135名患者中的98名(72.6%)中发现了RP2和RPGR基因突变,总共占79%的患者。与具有RPGR突变的患者相比,具有RP2突变的患者平均具有较低的视敏度,但视野范围相似,最终的暗适应阈值和30 Hz ERG振幅。在RPGR突变的患者中,与外显子1-14的RPGR突变的患者相比,ORF15突变的患者平均视野范围更大,ERG幅度更大。在具有ORF15突变的患者中,回归分析表明,最终的黑暗适应阈值变得更低(即接近正常值),并且30-Hz ERG幅度随着野生型ORF15氨基酸序列长度的增加而增加。此外,随着ORF15移码突变后异常氨基酸序列的长度增加,疾病的严重性也增加。

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