Emerging phenotypes linked to variants in SAMD9 and MIRAGE syndrome

Jenifer P Suntharalingham1, Miho Ishida1, Ignacio Del Valle1

  • 1Genetics and Genomic Medicine Research and Teaching Department, UCL Great Ormond Street Institute of Child Health, University College London, London, United Kingdom.

Frontiers in Endocrinology
|September 5, 2022
PubMed
Abstract

Insights

MIRAGE syndrome, caused by SAMD9 variants, presents diverse symptoms beyond initial reports, including growth restriction and endocrine issues. Early diagnosis of this complex condition is crucial for effective patient management.

Area of Science:

  • Genetics
  • Pediatrics
  • Endocrinology

Background:

  • Heterozygous de novo variants in SAMD9 gene cause MIRAGE syndrome, a multisystem disorder.
  • MIRAGE syndrome encompasses myelodysplasia, infection, growth restriction, adrenal hypoplasia, genital phenotypes, and enteropathy.
  • Expanding clinical associations include placental dysfunction, poor post-natal growth, and endocrine features, with milder phenotypes like hypospadias and normal adrenal function increasingly reported.

Purpose of the Study:

  • Investigate the spectrum of SAMD9 variants and associated clinical features, exploring genotype-phenotype correlations.
  • Determine if SAMD9 disruption impacts placental function, leading to pregnancy loss or recurrent miscarriage.
  • Assess the association of pathogenic SAMD9 variants with isolated fetal growth restriction.

Main Methods:

  • Analysis of published data on SAMD9 variants, focusing on variant type, position, pregnancy outcomes, growth, and endocrine features.
  • Genetic analysis of SAMD9 in products of conception (n=26), recurrent miscarriage cohorts (n=96), fetal growth restriction (n=44), small for gestational age infants (n=20), and Silver-Russell Syndrome cases (n=8).

Main Results:

  • SAMD9 variants identified in 116 individuals: 64 with myelodysplastic syndrome/monosomy 7 and 52 with MIRAGE syndrome.
  • A significant proportion of MIRAGE patients (21.2%) lack adrenal phenotypes; these infants had better birth weight and gestational age compared to those with adrenal insufficiency.
  • Hypospadias is common in MIRAGE patients; additional endocrinopathies include hypothyroidism, hypoglycemia/hyperglycemia, short stature, and panhypopituitarism. No significant SAMD9 variant enrichment was found in pregnancy loss or growth restriction cohorts.

Conclusions:

  • MIRAGE syndrome exhibits greater phenotypic diversity than previously recognized, including growth restriction and multisystem involvement without adrenal insufficiency.
  • Endocrinopathies in MIRAGE syndrome may be subtle, develop gradually, or be underreported, potentially leading to underdiagnosis.
  • Timely diagnosis of SAMD9-associated conditions, which can present with non-specific features like fetal growth restriction, infections, anemia, and lung problems, is essential for personalized management.

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