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首页> 外文期刊>Human Molecular Genetics >Genotype/phenotype correlations of NPHS1 and NPHS2 mutations in nephrotic syndrome advocate a functional inter-relationship in glomerular filtration.
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Genotype/phenotype correlations of NPHS1 and NPHS2 mutations in nephrotic syndrome advocate a functional inter-relationship in glomerular filtration.

机译:肾病综合征中NPHS1和NPHS2突变的基因型/表型相关性提倡肾小球滤过功能相关性。

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摘要

Mutations of the novel renal glomerular genes NPHS1 and NPHS2 encoding nephrin and podocin cause two types of severe nephrotic syndrome presenting in early life, Finnish type congenital nephrotic syndrome (CNF) and a form of autosomal recessive familial focal segmental glomerulosclerosis (SRN1), respectively. To investigate the mechanisms by which mutations might cause glomerular protein leak, we analysed NPHS1/NPHS2 genotype/phenotype relationships in 41 non-Finnish CNF patients, four patients with congenital (onset 0 to 3 months) focal segmental glomerulosclerosis and five patients with possible SRN1 (onset 6 months to 2 years). We clarify the range of NPHS1 mutations in CNF, detecting mutation 'hot-spots' within the NPHS1 coding sequence. In addition, we describe a novel discordant CNF phenotype characterized by variable clinical severity, apparently influenced by gender. Moreover, we provide evidence that CNF may be genetically heterogeneous by detection of NPHS2 mutations in some CNF patients in whom NPHS1 mutations were not found. We confirm an overlap in the NPHS1/NPHS2 mutation spectrum with the characterization of a unique di-genic inheritance of NPHS1 and NPHS2 mutations, which results in a 'tri-allelic' hit and appears to modify the phenotype from CNF to one of congenital focal segmental glomerulosclerosis (FSGS). This may result from an epistatic gene interaction, and provides a rare example of multiple allelic hits being able to modify an autosomal recessive disease phenotype in humans. Our findings provide the first evidence for a functional inter-relationship between NPHS1 and NPHS2 in human nephrotic disease, thus underscoring their critical role in the regulation of glomerular filtration.
机译:编码肾素和Podocin的新型肾小球基因NPHS1和NPHS2的突变分别导致两种类型的严重肾病综合征出现在生命的早期,分别是芬兰型先天性肾病综合征(CNF)和一种常染色体隐性家族性局灶性节段性肾小球硬化症(SRN1)。为了研究突变可能导致肾小球蛋白泄漏的机制,我们分析了41名非芬兰CNF患者,4例先天性(发病0至3个月)局灶性节段性肾小球硬化患者和5例可能的SRN1患者的NPHS1 / NPHS2基因型/表型关系。 (发病6个月至2年)。我们阐明了CNF中NPHS1突变的范围,检测了NPHS1编码序列内的突变“热点”。此外,我们描述了一种新颖的不一致的CNF表型,其特征是可变的临床严重性,显然受性别影响。此外,我们提供的证据表明,在一些未发现NPHS1突变的CNF患者中,通过检测NPHS2突变,CNF可能在遗传上是异质的。我们证实了NPHS1 / NPHS2突变谱中的重叠,并具有NPHS1和NPHS2突变的独特双基因遗传特征,这导致了“三等位基因”突变,并似乎将CNF的表型改变为先天性局灶性节段性肾小球硬化症(FSGS)。这可能是由于上位基因相互作用引起的,并且提供了多个等位基因命中物能够改变人类常染色体隐性疾病表型的罕见例子。我们的发现为人类肾病中NPHS1和NPHS2之间的功能性相互关系提供了第一个证据,从而突显了它们在调节肾小球滤过中的关键作用。

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