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Divergent epigenetic profile underlie pubertal disorders in MKRN3-associated central precocious puberty and Prader-Willi syndrome:insights from a frameshift variant

摘要Background MKRN3 gene loss-of-function mutations cause central precocious puberty(CPP),whereas its deletion in Prader-Willi syndrome(PWS)paradoxically leads to hypogonadism.The mechanistic basis for these opposing reproductive phenotypes remains largely unclear.Methods We performed whole-exome sequencing in 98 Chinese CPP patients along with a systematic review of previously reported MKRN3 pathogenic and likely pathogenic variants to summarize genotype-phenotype correlations.Subsequently,genome-wide DNA methylation profiling was performed in CPP patients with the MKRN3 pathogenic variant,and the results were compared with those of patients with PWS,idiopathic CPP,and healthy controls.Results A pathogenic frameshift MKRN3 variant[c.476dupC(p.Ala159fs*15)],representing the first frameshift mutation reported within the inter-C3H1 hotspot region in an Asian cohort,was identified.Patients with severe MKRN3 variants exhibited significantly earlier pubertal onset(5.80 vs.7.50 years,P=0.029)and higher GnRH-stimulated peak LH levels(34.55 vs.11.00 IU/L,P=0.047)than those with missense mutations.Methylation analysis revealed no differences in MKRN3 but identified 18,609 differentially methylated positions between MKRN3-CPP and PWS.Key findings included hypermethylation of IGSF10(Δ β=0.37),ZC3H18(Δ β=0.27),SH3RF3(Δ β=0.36),and PTH1R(Δ β=0.28),alongside hypomethylation of MAGEL2(Δ β=-0.19),and PTPA(Δ β=-0.23),where Δ β represents the difference in DNA methylation β values between groups.Conclusions We identified a first frameshift pathogenic variant localized to the inter-C3H1 region in Asia,further confirming its functional significance.Our study suggests an epigenetic framework that could potentially explain how divergent pubertal phenotypes in MKRN3 deficiency might arise from dysregulated epigenetic programming of downstream neuroendocrine pathways.

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作者 Yu-Yu Jin [1] Xiao Wang [2] Lin Yang [3] Jian Mu [4] Fei-Hong Luo [1] 学术成果认领
作者单位 Department of Pediatric Endocrinology and Inherited Metabolic Diseases,Children's Hospital of Fudan University,National Children's Medical Center,399 Wan Yuan Road,Min Hang District,Shanghai 201102,China [1] Center for Molecular Medicine,Children's Hospital of Fudan University,National Children's Medical Center,399 Wan Yuan Road,Min Hang District,Shanghai 201102,China [2] Department of Pediatric Endocrinology and Inherited Metabolic Diseases,Children's Hospital of Fudan University,National Children's Medical Center,399 Wan Yuan Road,Min Hang District,Shanghai 201102,China;Shanghai Key Laboratory of Birth Defects,Pediatrics Research Institute,Children's Hospital of Fudan University,National Children's Medical Center,399 Wan Yuan Road,Min Hang District,Shanghai 201102,China [3] Institute of Pediatrics,Children's Hospital of Fudan University,The Institutes of Biomedical Sciences,State Key Laboratory of Genetic Engineering,Fudan University,Shanghai 200032,China [4]
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DOI 10.1007/s12519-026-01017-6
发布时间 2026-03-16(万方平台首次上网日期,不代表论文的发表时间)
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世界儿科杂志(英文版)

世界儿科杂志(英文版)

2026年22卷2期

258-271页

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