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在与肾单位肾痨-4相关的NPHP4基因中鉴定出一种新型缺失变异(c.2999_3005delTGTGTGT/p.Asn1000SerfsTer4)。

Identification of a Novel Deletion Variant (c.2999_3005delTGTGTGT/p.Asn1000SerfsTer4) in NPHP4 Associated With Nephronophthisis-4.

作者信息

Miri Karam Zahra, Gohari Atieh Karimi, Khabaz Mohammad Javad Rezazadeh, Yari Abolfazl, Meybodi Seyed Mahdi Emami, Attari Rezvan, Torabi Maryam, Vafaeie Farzane, Moraddahande Fateme Moradi, Amiri Sara, Saeidi Kolsoum

机构信息

Department of Medical Genetics, Afzalipour Faculty of Medicine, Kerman University of Medical Sciences, Kerman, Iran.

Neuroscience Research Center, Institute of Neuropharmacology, Kerman University of Medical Sciences, Kerman, Iran.

出版信息

J Clin Lab Anal. 2024 Jun;38(11-12):e25077. doi: 10.1002/jcla.25077. Epub 2024 Jun 19.

Abstract

BACKGROUND

Nephronophthisis-4 (NPHP4) is an inherited renal ciliopathy described by renal fibrosis and progressive impairment of kidney function. This study aimed to investigate the genetic basis and clinical manifestations of NPHP4 in two Iranian siblings.

METHODS

The proband was a 27-year-old male with features of end-stage renal disease, including anemia, uremia, polyuria, and polydipsia. It is worth mentioning that he has a 22-year-old sister with a similar presentation. Clinical diagnosis procedures, such as renal biopsy, brain imaging, blood and urine tests, cardiac evaluation, ophthalmic inspection, and auditory function assessment, were carried out to evaluate organ involvement and potential comorbidities. Whole-exome sequencing (WES) and segregation analysis were performed to identify and confirm genetic variants associated with the condition. Computational variant analysis was conducted to evaluate the pathogenicity of the candidate variant. Furthermore, the SWISS-MODEL server was utilized for protein modeling.

RESULTS

The brain, cardiac, ocular, and auditory functions were normal. Renal biopsy of the proband showed chronic interstitial inflammation and fibrosis. We found a novel homozygous 7-base pair deletion (c.2999_3005delTGTGTGT/ p.Asn1000SerfsTer4) in exon 21 of NPHP4 by WES. Segregation analysis confirmed homozygosity for the NPHP4 variant in affected individuals and heterozygous carrier status in parents, supporting autosomal recessive inheritance. 3D protein modeling indicated significant structural changes due to the variant.

CONCLUSION

This study expands the genetic causes and phenotypic spectrum of nephronophthisis-4 and reveals the importance of genetic analysis in diagnosing and managing rare inherited kidney disorders, particularly those involving consanguinity.

摘要

背景

肾单位肾痨-4(NPHP4)是一种遗传性肾脏纤毛病,其特征为肾纤维化和肾功能进行性损害。本研究旨在调查两名伊朗同胞中NPHP4的遗传基础和临床表现。

方法

先证者为一名27岁男性,具有终末期肾病的特征,包括贫血、尿毒症、多尿和烦渴。值得一提的是,他有一个22岁的妹妹,表现相似。进行了临床诊断程序,如肾活检、脑部成像、血液和尿液检查、心脏评估、眼科检查和听觉功能评估,以评估器官受累情况和潜在的合并症。进行全外显子组测序(WES)和分离分析,以识别和确认与该疾病相关的基因变异。进行计算变异分析以评估候选变异的致病性。此外,利用SWISS-MODEL服务器进行蛋白质建模。

结果

脑、心脏、眼睛和听觉功能均正常。先证者的肾活检显示慢性间质性炎症和纤维化。通过WES,我们在NPHP4的第21外显子中发现了一个新的纯合7碱基对缺失(c.2999_3005delTGTGTGT/p.Asn1000SerfsTer4)。分离分析证实了受影响个体中NPHP4变异的纯合性以及父母中的杂合携带者状态,支持常染色体隐性遗传。三维蛋白质建模表明该变异导致了显著的结构变化。

结论

本研究扩展了肾单位肾痨-4的遗传病因和表型谱,并揭示了基因分析在诊断和管理罕见遗传性肾脏疾病(特别是那些涉及近亲结婚的疾病)中的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/74d8/11252830/47811045ab78/JCLA-38-e25077-g005.jpg

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