Novel MKRN3 Missense Mutations Associated With Central Precocious Puberty Reveal Distinct Effects on Ubiquitination

John C Magnotto1, Alessandra Mancini1, Keisha Bird2

  • 1Division of Endocrinology, Diabetes and Hypertension, Brigham and Women's Hospital, Harvard Medical School, Boston, MA 02115, USA.

Abstract

Insights

Mutations in the MKRN3 gene are a common cause of central precocious puberty (CPP). This study identified new MKRN3 mutations, revealing distinct effects on protein ubiquitination and early puberty onset.

Area of Science:

  • Genetics
  • Endocrinology
  • Molecular Biology

Background:

  • Loss-of-function mutations in maternally imprinted genes MKRN3 and DLK1 are linked to central precocious puberty (CPP).
  • MKRN3 mutations represent the most frequent genetic cause of CPP identified to date.

Purpose of the Study:

  • To screen patients with CPP for mutations in MKRN3 and DLK1.
  • To investigate the in vitro functional impact of identified MKRN3 and DLK1 mutations on protein function.

Main Methods:

  • Sanger sequencing of MKRN3 and DLK1 in 84 unrelated CPP patients and their relatives.
  • Western blot analysis to evaluate protein ubiquitination profiles of MKRN3 variants.

Main Results:

  • Eight heterozygous MKRN3 mutations were found in 9 CPP patients, including 5 novel missense mutations and 1 frameshift variant.
  • No pathogenic variants were detected in DLK1.
  • MKRN3 mutations were associated with an earlier onset of puberty and elevated luteinizing hormone and follicle-stimulating hormone levels.
  • Mutations in the MKRN3 RING finger domain altered ubiquitination patterns, impacting protein function.

Conclusions:

  • MKRN3 mutations were identified in 10.7% of the CPP cohort, aligning with prior research.
  • Novel MKRN3 mutations exhibited varied ubiquitination patterns, suggesting diverse molecular mechanisms driving CPP.
  • These findings deepen the understanding of MKRN3's role in regulating pubertal timing.

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