Wen-Yu Gong, Fan-Na Liu, Liang-Hong Yin, Jun Zhang
Journal: BioMed research international 2021;2021():6664973
PMID: 33748275
Alport syndrome (AS) is an inherited kidney disease caused by defects in type IV collagen, which is characterized by hematuria, progressive nephritis or end-stage renal disease (ESRD), hearing loss, and occasionally ocular lesions. Approximately 80% of AS cases are caused by X-linked mutations in the gene. This study explored novel deletion and missense mutations in responsible for renal disorder in two Han Chinese families. In pedigree 1, the five male patients all had ESRD at a young age, while the affected female members only presented with microscopic hematuria. Whole exome sequencing and Sanger sequencing identified a novel frameshift deletion mutation (c.422_428del, p.Leu142Valfs∗11) in exon 7 of . In pedigree 2, the 16-year-old male proband had elevated serum creatinine (309 mol/L) without extrarenal manifestations, while his mother only manifested with hematuria. A missense mutation (c.476G>T, p.Gly159Val) was found in exon 9 of the gene. Neither of these mutations was present in the Exome Variant Server of the NHLBI-ESP database, nor was it found in the ExAC or 1000 Genomes databases. Through the literature review, it was found that male Chinese patients with X-linked AS carried deletion or missense mutations had a more severe phenotype than female patients, particularly in proteinuria and impaired renal function. Compared to male patients with missense mutations, patients in whom deletion mutations were found were more likely to progress to ESRD (15.4% vs. 36.0%, = 0.041). This study identified two novel mutations in Chinese families with X-linked AS, expanded the mutational spectrum of the gene, and presented findings that are significant for the screening and genetic diagnosis of AS.
Copyright © 2021 Wen-yu Gong et al.
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