IARS2-related disease manifesting as sideroblastic anemia and hypoparathyroidism: A case report

Yan Gong1, Xiao Ping Lan2, Sheng Guo1

  • 1Department of Endocrinology, Shanghai Children's Hospital, School of Medicine, Shanghai Jiao Tong University, Shanghai, China.

Frontiers in Pediatrics
|January 27, 2023
PubMed
Abstract

Insights

Mitochondrial disorders caused by IARS2 gene mutations present a wide range of symptoms. This case highlights a novel mutation causing sideroblastic anemia and hypoparathyroidism, expanding the known clinical spectrum.

Area of Science:

  • Genetics
  • Mitochondrial Biology
  • Biochemistry

Background:

  • The IARS2 gene encodes mitochondrial isoleucine-tRNA synthetase, crucial for mitochondrial protein synthesis.
  • Pathogenic variants in IARS2 (OMIM: 616007) are associated with mitochondrial disorders.
  • The clinical spectrum of IARS2-related disorders is broad and variable, with fewer than 30 cases reported.

Observation:

  • A 14-year-old girl presented with a 12-year history of anemia, diagnosed as pure red cell aplasia.
  • She also exhibited cataracts, mental and physical retardation, convulsions, hypoparathyroidism, and developmental delays.
  • Genetic testing revealed compound heterozygous variants in the IARS2 gene: c.2450G>A (p.Arg817His) and c.2511del (p.Leu838Phefs*69).

Findings:

  • A previously unreported mutation in the IARS2 gene was identified in a patient with sideroblastic anemia and hypoparathyroidism.
  • The patient's anemia was refractory to conventional treatments, requiring blood transfusions.
  • Cocktail therapy (coenzyme Q10, vitamin B2, L-Carnitine, vitamin E) showed partial improvement, with persistent symptoms and elevated ferritin levels managed with deferiprone.

Implications:

  • This case expands the known clinical and genetic spectrum of IARS2-associated mitochondrial disorders.
  • Increased clinical awareness of IARS2-related diseases is crucial for reducing underdiagnosis and misdiagnosis.
  • Identifying novel mutations aids in understanding genotype-phenotype correlations and developing targeted therapies.

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