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Genome-wide Association Study of N370S Homozygous Gaucher Disease Reveals the Candidacy of CLN8 gene as a Genetic Modifier Contributing to Extreme Phenotypic Variation

机译:N370S纯合理Gaucher病的基因组关联研究揭示了ClN8基因作为遗传调节剂的候选性有助于极端表型变异

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摘要

Mutations in GBA1 gene result in defective acid β-glucosidase and the complex phenotype of Gaucher disease (GD) related to the accumulation of glucosylceramide-laden macrophages. The phenotype is highly variable even among patients harboring identical GBA1 mutations. We hypothesized that modifier gene(s) underlie phenotypic diversity in GD and performed a GWAS study in Ashkenazi Jewish patients with type 1 GD (GD1), homozygous for N370S mutation. Patients were assigned to mild, moderate or severe disease category using composite disease severity scoring systems. Whole-genome genotyping for >500,000 SNPs was performed to search for associations using OQLS algorithm in 139 eligible patients. Several SNPs in linkage disequilibrium within the CLN8 gene locus were associated with the GD1 severity: SNP rs11986414 was associated with GD1 severity at p value 1.26 × 10−6. Compared to mild disease, risk allele A at rs11986414 conferred an odds ratio of 3.72 for moderate/severe disease. Loss of function mutations in CLN8 causes neuronal ceroid-lipofuscinosis but our results indicate that its increased expression may protect against severe GD1. In cultured skin fibroblasts, the relative expression of CLN8 was higher in mild GD compared to severely affected patients in whom CLN8 risk alleles were over-represented. In an in vitro cell model of GD, CLN8 expression was increased which was further enhanced in the presence of bioactive substrate, glucosylsphingosine. Taken together, CLN8 is a candidate modifier gene for GD1 that may function as a protective sphingolipid sensor and/or in glycosphingolipid trafficking. Future studies should explore the role of CLN8 in pathophysiology of GD.
机译:GBA1基因中的突变导致酸β-葡糖苷酶的缺陷β-葡糖苷酶和葡萄糖胺酰胺 - 载荷巨噬细胞的积累相关的Gaucher病(GD)的复杂表型。即使在含有相同的GBA1突变的患者中,表型也是高度可变的。我们假设GD中的调节剂基因是表型型多样性,并在Ashkenazi犹太患者中进行了GWAS研究,乳腺型1 GD(GD1),纯合对于N370S突变。患者使用复合疾病严重程度评分系统分配给轻度,中度或严重的疾病类别。在139名符合条件的患者中,进行了> 500,000个SNP的全基因组基因分型以搜索使用OQLS算法的关联。 CLN8基因座内的连锁不平衡中的几种SNP与GD1严重程度相关:SNP RS11986414与P值为1.26×10 -6 的GD1严重程度相关。与轻度疾病相比,RS11986414的风险等位基因A赋予适度/严重疾病3.72的几率比。 ClN8中功能突变的丧失导致神经元曲线胰腺癌,但我们的结果表明其增加的表达可能会防止严重的GD1。在培养的皮肤成纤维细胞中,与患有CLN8风险等位基因的严重影响患者相比,CLN8的相对表达在轻微的GD中较高。在Gd的体外细胞模型中,增加了ClN8表达,其在生物活性底物,葡糖糖氏苷的存在下进一步增强。一起携带ClN8是用于GD1的候选修饰基因,其可以用作保护性鞘脂传感器和/或糖磷脂运输。未来的研究应该探讨CLN8在GD病理生理学中的作用。

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