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Updated: Aug 7, 2025

Mutagenesis and Analysis of Genetic Mutations in the GC-rich KISS1 Receptor Sequence Identified in Humans with Reproductive Disorders
Published on: September 4, 2011
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.
Context:
Loss-of-function mutations in the maternally imprinted genes, MKRN3 and DLK1, are associated with central precocious puberty (CPP). Mutations in MKRN3 are the most common known genetic etiology of CPP.
Objective:
This work aimed to screen patients with CPP for MKRN3 and DLK1 mutations and analyze the effects of identified mutations on protein function in vitro.
Methods:
Participants included 84 unrelated children with CPP (79 girls, 5 boys) and, when available, their first-degree relatives. Five academic medical institutions participated. Sanger sequencing of MKRN3 and DLK1 5' upstream flanking and coding regions was performed on DNA extracted from peripheral blood leukocytes. Western blot analysis was performed to assess protein ubiquitination profiles.
Results:
Eight heterozygous MKRN3 mutations were identified in 9 unrelated girls with CPP. Five are novel missense mutations, 2 were previously identified in patients with CPP, and 1 is a frameshift variant not previously associated with CPP. No pathogenic variants were identified in DLK1. Girls with MKRN3 mutations had an earlier age of initial pubertal signs and higher basal serum luteinizing hormone and follicle-stimulating hormone compared to girls with CPP without MRKN3 mutations. Western blot analysis revealed that compared to wild-type MKRN3, mutations within the RING finger domain reduced ubiquitination whereas the mutations outside this domain increased ubiquitination.
Conclusion:
MKRN3 mutations were present in 10.7% of our CPP cohort, consistent with previous studies. The novel identified mutations in different domains of MKRN3 revealed different patterns of ubiquitination, suggesting distinct molecular mechanisms by which the loss of MRKN3 results in early pubertal onset.
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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