Evidence map›Paper›PMID 40634996›Full record

ArticleOrphanet journal of rare diseases2025

Identification of novel MYO19 variants in neonatal hypertrophic cardiomyopathy: a familial analysis revealing oligogenic contributors to disease severity.

Hye-Won Cho, Hyeseon Kim, Jeong-Min Kim, Dong Mun Shin, Oc-Hee Kim, Misun Yang, Heui Seung Jo, Mi-Ae Jang, Ja-Hyun Jang, Hyun-Young Park and 2 more

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Article in Orphanet journal of rare diseases, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.

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5 · Who and what money

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12 authors.

Hye-Won Cho *Division of Genome Science, Department of Precision Medicine, National Institute of Health, Cheongju, Chungbuk, 28159, Korea.
Hyeseon Kim *Department of Pediatrics, Samsung Medical Center, Sungkyunkwan University School of Medicine, 81 Irwon-Ro, Gangnam-Gu, Seoul, 06351, Korea.
Jeong-Min KimDivision of Genome Science, Department of Precision Medicine, National Institute of Health, Cheongju, Chungbuk, 28159, Korea.
Dong Mun ShinDivision of Genome Science, Department of Precision Medicine, National Institute of Health, Cheongju, Chungbuk, 28159, Korea.
Oc-Hee KimDivision of Genome Science, Department of Precision Medicine, National Institute of Health, Cheongju, Chungbuk, 28159, Korea.
Misun YangDepartment of Pediatrics, Samsung Medical Center, Sungkyunkwan University School of Medicine, 81 Irwon-Ro, Gangnam-Gu, Seoul, 06351, Korea.
Heui Seung JoDepartment of Pediatrics, Kangwon National University School Hospital, Kangwon National Univertisy School of Medicine, Chuncheon, 24289, Korea.
Mi-Ae JangDepartment of Laboratory Medicine and Genetics, Samsung Medical Center, Sungkyunkwan University School of Medicine, Seoul, 06351, Korea.
Ja-Hyun JangDepartment of Laboratory Medicine and Genetics, Samsung Medical Center, Sungkyunkwan University School of Medicine, Seoul, 06351, Korea.
Hyun-Young ParkNational Institute of Health, Cheongju, 28159, Korea.
Yun Sil ChangDepartment of Pediatrics, Samsung Medical Center, Sungkyunkwan University School of Medicine, 81 Irwon-Ro, Gangnam-Gu, Seoul, 06351, Korea. yunsil.chang@gmail.com.
Mi-Hyun ParkDivision of Genome Science, Department of Precision Medicine, National Institute of Health, Cheongju, Chungbuk, 28159, Korea. mihyun4868@korea.kr.

Funding

Korea National Institute of Health 2022-NI-060-02Korea National Institute of Health 2025-NI-003-00)Korea National Institute of Health This study was supported by the Korea National Institute of Health Intramural Research Program (2019-NI-093-00
6 · The paper itself

Abstract

backgroundPediatric hypertrophic cardiomyopathy (HCM) is a rare condition, particularly in neonates, and is characterized by rapid and extensive myocardial hypertrophy, often leading to severe clinical outcomes. HCM can arise from variants in sarcomeric genes, which are essential for myocardial contractions, as well as non-sarcomeric gene variants. Although genetic modifiers and oligogenic inheritance have been implicated in congenital heart disease and cardiomyopathy, their complexity in HCM has not been fully elucidated, especially in familial cases with variable phenotypes. Hence, this study aims to investigate the genetic architecture in a family with a history of cardiac disease and neonatal HCM, focusing on oligogenic inheritance of non-sarcomeric variants.

methodsClinical data and blood samples were collected for genetic analysis. Whole genome sequencing (WGS) and bioinformatic analyses identified compound heterozygous variants in the MYO19 gene. Maternally inherited variants were analyzed because the proband's mother was also diagnosed with HCM. WGS was performed on the patient's maternal grandfather and aunt, who have cardiac disease, revealing candidate genetic variants that may contribute to the cardiac phenotype.

resultsCompound heterozygous MYO19 variants were identified in the neonatal patient. Missense c.203C > G (p.A68G) and frameshift c.275_276del (p.E92Vfs*19) variants were identified, which were located in the myosin motor domain, a functionally crucial region of the MYO19 protein. Maternally inherited missense variants were identified in SURF1 and ETFDH. All three genes are associated with mitochondrial function, and in silico prediction tools suggest that these variants are likely damaging. Other candidate genetic variants possibly contributing to the cardiac phenotype were also detected in the extended maternal family.

conclusionsTo the best of our knowledge, this study represents the first report proposing MYO19 as a candidate gene for HCM and highlights the potential role of oligogenic inheritance in the etiology of the disease. Furthermore, plausible candidate variants of other mitochondria-related genes, such as MYO19, SURF1, and ETFDH, were identified, and other family members were investigated to support the pathogenesis of HCM further. Given the limited understanding of the genetics of pediatric HCM, these findings contribute valuable insights into its genetic basis in pediatric patients.

Indexed as

Cardiomyopathy, HypertrophicMyosinsFemaleHumansInfant, NewbornMalePedigreeMyosinsCompound heterozygous variantHypertrophic cardiomyopathyMitochondrial geneMYO19NeonateOligogenic inheritance

Identifiers

PMID40634996
PMCPMC12239423

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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the Socratic graph.