Development of hypomelanotic macules is associated with constitutive activated mTORC1 in tuberous sclerosis complex

Lisbeth Birk Møller1, Bitten Schönewolf-Greulich2, Thomas Rosengren2

  • 1Applied Human Molecular Genetics, Clinical Genetics Clinic, Kennedy Center, Copenhagen University Hospital, Glostrup, Denmark; Department of Science and Environment, Roskilde University, Roskilde, Denmark.

Insights

Tuberous sclerosis complex (TSC) is linked to TSC1/TSC2 gene mutations. A silent TSC2 mutation, c.4149C>T, causes abnormal splicing and milder TSC, with hypomelanotic macules linked to activated mTORC1 signaling.

Area of Science:

  • Genetics
  • Molecular Biology
  • Dermatology

Background:

  • Tuberous sclerosis complex (TSC) is an autosomal dominant disorder caused by mutations in TSC1 or TSC2 genes.
  • The TSC1/TSC2 gene products form a complex regulating the mammalian target of rapamycin complex 1 (mTORC1) pathway.
  • TSC typically presents with neurological, dermatological, and visceral manifestations.

Purpose of the Study:

  • To investigate the molecular basis of a TSC family with atypical presentation, specifically lacking renal manifestations.
  • To determine the pathogenicity of a "silent" substitution in the TSC2 gene.
  • To explore the role of mTORC1 signaling in TSC-associated hypopigmented macules.

Main Methods:

  • Family-based genetic analysis to identify the causative mutation.
  • Splicing assays to analyze the effect of the TSC2 variant.
  • Cellular studies using patient-derived fibroblasts to assess mTORC1 signaling.
  • Comparison of mTORC1 activity in fibroblasts from lesional and non-lesional skin.

Main Results:

  • A novel "silent" substitution (c.4149C>T, p.Ser1383Ser) in TSC2 was identified in affected family members.
  • This substitution creates an alternative splice site, leading to truncated, non-functional TSC2 transcripts.
  • Hypopigmented macules in patients exhibited constitutive mTORC1 activation, while non-lesional skin showed partial mTORC1 deregulation.

Conclusions:

  • The "silent" TSC2 variant c.4149C>T is pathogenic, causing alternative splicing and contributing to a milder TSC phenotype.
  • Constitutive mTORC1 activation in skin is associated with the development of hypopigmented macules in TSC.
  • This study highlights the importance of evaluating "silent" variants and the role of mTORC1 in TSC pathogenesis.

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