Exome sequence analysis identifies a homozygous, pathogenic, frameshift variant in the MAN2B1 gene underlying

Jamil Amjad Hashmi1,2, Muhammad Latif1,2, Reham M Balahmar3

  • 1Department of Basic Medical Sciences, College of Medicine, Taibah University, Madinah, Saudi Arabia.

Frontiers in Genetics
|September 16, 2024
PubMed
Abstract

Insights

This study identifies a pathogenic variant in the MAN2B1 gene causing alpha-mannosidosis. The findings reveal novel clinical presentations of this rare genetic disorder, expanding our understanding of its phenotypic variability.

Area of Science:

  • Genetics
  • Biochemistry
  • Medical Genetics

Background:

  • Alpha-mannosidosis is a rare, autosomal recessive lysosomal storage disease.
  • It results from a deficiency in the enzyme alpha-mannosidase.
  • Symptoms vary and worsen with age, including immune deficiency, hearing loss, and skeletal abnormalities.

Purpose of the Study:

  • To investigate the genetic basis of alpha-mannosidosis in two Saudi families with atypical phenotypes.
  • To identify novel variants and understand their impact on protein structure and function.

Main Methods:

  • Whole exome sequencing (WES) was performed on affected individuals from two families.
  • Sanger sequencing and segregation analysis were used for variant validation.
  • 3D protein modeling was employed to assess the in silico effects of the identified variant.

Main Results:

  • A known pathogenic homozygous frameshift variant (c.2402dupG; p.S802fs*129) in the MAN2B1 gene was identified in both families.
  • Family A presented with speech delay, hearing impairment, and craniostenosis.
  • Family B exhibited clubfoot and glaucoma, novel symptoms for alpha-mannosidosis.

Conclusions:

  • The study identified novel clinical presentations of alpha-mannosidosis associated with a MAN2B1 gene variant.
  • These findings highlight the phenotypic variability of alpha-mannosidosis and suggest that biallelic MAN2B1 variants can lead to new clinical manifestations.
  • The identified variant significantly alters the MAN2B1 protein structure, impacting its enzymatic function.

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