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Angiopoietin receptor TEK interacts with CYP1B1 in primary congenital glaucoma

机译:血管生成素受体TEK与CYP1B1在原发性先天性青光眼中相互作用

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摘要

Primary congenital glaucoma (PCG) is a severe autosomal recessive ocular disorder associated with considerable clinical and genetic heterogeneity. Recently, rare heterozygous alleles in the angiopoietin receptor-encoding gene TEK were implicated in PCG. We undertook this study to ascertain the second mutant allele in a large cohort (n = 337) of autosomal recessive PCG cases that carried heterozygous TEK mutations. Our investigations revealed 12 rare heterozygous missense mutations in TEK by targeted sequencing. Interestingly, four of these TEK mutations (p.E103D, p.I148T, p.Q214P, and p.G743A) co-occurred with three heterozygous mutations in another major PCG gene CYP1B1 (p.A115P, p.E229K, and p.R368H) in five families. The parents of these probands harbored either of the heterozygous TEK or CYP1B1 alleles and were asymptomatic, indicating a potential digenic mode of inheritance. Furthermore, we ascertained the interactions of TEK and CYP1B1 by co-transfection and pull-down assays in HEK293 cells. Ligand responsiveness of the wild-type and mutant TEK proteins was assessed in HUVECs using immunofluorescence analysis. We observed that recombinant TEK and CYP1B1 proteins interact with each other, while the disease-associated allelic combinations of TEK (p.E103D)∷CYP1B1 (p.A115P), TEK (p.Q214P)∷CYP1B1 (p.E229K), and TEK (p.I148T)∷CYP1B1 (p.R368H) exhibit perturbed interaction. The mutations also diminished the ability of TEK to respond to ligand stimulation, indicating perturbed TEK signaling. Overall, our data suggest that interaction of TEK and CYP1B1 contributes to PCG pathogenesis and argue that TEK-CYP1B1 may perform overlapping as well as distinct functions in manifesting the disease etiology.
机译:原发性先天性青光眼(PCG)是一种严重的常染色体隐性遗传性眼病,与大量的临床和遗传异质性有关。最近,血管生成素受体编码基因TEK中罕见的杂合等位基因与PCG有关。我们进行了这项研究,以确定携带杂合的TEK突变的常染色体隐性PCG病例的大型队列(n = 337)中的第二个突变等位基因。我们的研究通过靶向测序揭示了TEK中12个罕见的杂合错义突变。有趣的是,这些TEK突变中的四个(p.E103D,p.I148T,p.Q214P和p.G743A)在另一个主要PCG基因CYP1B1中分别出现了三个杂合突变(p.A115P,p.E229K和p。 R368H)在五个家庭中。这些先证者的父母都携带有杂合的TEK或CYP1B1等位基因,并且无症状,表明潜在的双基因遗传方式。此外,我们通过在HEK293细胞中的共转染和下拉检测法确定了TEK和CYP1B1的相互作用。使用免疫荧光分析评估了HUVEC中野生型和突变型TEK蛋白的配体响应性。我们观察到重组TEK和CYP1B1蛋白彼此相互作用,而与疾病相关的TEK(p.E103D)∷CYP1B1(p.A115P),TEK(p.Q214P)∷CYP1B1(p.E229K)等位基因组合和TEK(p.I148T)∷CYP1B1(p.R368H)表现出干扰作用。突变也降低了TEK对配体刺激的响应能力,表明TEK信号受到干扰。总的来说,我们的数据表明TEK和CYP1B1的相互作用促进了PCG的发病机理,并认为TEK-CYP1B1在表现疾病病因方面可能执行重叠以及不同的功能。

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