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

Author:

Miri Karam Zahra12ORCID,Gohari Atieh Karimi1,Khabaz Mohammad Javad Rezazadeh3,Yari Abolfazl14ORCID,Meybodi Seyed Mahdi Emami5ORCID,Attari Rezvan6,Torabi Maryam7,Vafaeie Farzane4,Moraddahande Fateme Moradi8,Amiri Sara9,Saeidi Kolsoum12ORCID

Affiliation:

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

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

3. Department of Medical Genetics, Faculty of Medicine Shahid Sadoughi University of Medical Sciences Yazd Iran

4. Cardiovascular Diseases Research Center Birjand University of Medical Sciences Birjand Iran

5. Yazd Cardiovascular Research Center Non‐Communicable Diseases Research Institute, Shahid Sadoughi University of Medical Sciences Yazd Iran

6. Department of Biology University of Guilan Rasht Iran

7. Department of Biology, Faculty of Science, Agriculture and New Technologies, Shiraz Branch Islamic Azad University Shiraz Iran

8. Department of Medical Laboratory Sciences School of Allied Medical Sciences, Shahid Beheshti University of Medical Sciences Tehran Iran

9. Department of Biology, Kerman Branch Islamic Azad University Kerman Iran

Abstract

ABSTRACTBackgroundNephronophthisis‐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.MethodsThe 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.ResultsThe 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.ConclusionThis 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.

Publisher

Wiley

Reference40 articles.

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