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[Clinical and genetic characteristics of 15 pediatric cases of long QT syndrome type 2 caused by KCNH2 variants].

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PMID41834208
JournalZhonghua er ke za zhi = Chinese journal of pediatrics
Publication Date2026-03-14
Ingested2026-08-02 12:06 AM
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Objective: To investigate the clinical features and genotype-phenotype correlation in pediatric patients with long QT syndrome type 2 (LQTS2) caused by KCNH2 variants. Methods: A retrospective cohort study. Fifteen children with KCNH2 variants admitted to Beijing Children's Hospital, Capital Medical University, from May 2020 to August 2025 were included. Clinical data, electrocardiogram (ECG) findings, and genetic test results were collected. Variant pathogenicity was classified according to the American College of Medical Genetics and Genomics (ACMG) guidelines. The genotype-phenotype correlation was analyzed. Based on the location of protein functional domain, patients were divided into a pore-domain group and a non-pore-domain group. Differences in ECG parameters were compared between the two groups. Independent sample t-test was used for inter-group comparison. Results: The cohort included 10 males and 5 females, with the age of 9.5 (5.3, 11.9) years. Eleven patients presented with syncope as the initial symptom, while 4 cases were asymptomatic. Among the symptomatic cases, triggers included exercise/emotional stress (7 cases), awakening (2 cases), infection (1 case), and no obvious trigger (1 case). Fourteen children exhibited prolonged correct QT interval (QTc) on resting ECG, measuring 502 (490, 548) ms. Seven cases exhibited characteristic LQTS2 T-wave changes, and 8 children had concomitant arrhythmias, including 3 cases with torsades de pointes. All 15 children carried heterozygous KCNH2 variants (13 missense, 1 nonsense and 1 frameshift). Among these, 5 variants were located in the pore domain (e.g. P-loop/H5, S5), and 10 cases in non-pore domains (e.g. N-terminus, C-terminus). All pore-domain variants were classified as pathogenic according to ACMG criteria, and the QTc in this group was significantly longer than that in the non-pore-domain group ((548±32) vs. (498±45) ms, t=2.33, P<0.05). Three children in the pore-domain group experienced torsades de pointes. The non-pore-domain group showed greater clinical heterogeneity, with 5 variants classified as of uncertain significance. After the administration of beta-blockers therapy, syncope did not recur in 14 cases, while 1 case with a pore-domain variant continued to experience syncopal episodes. Conclusions: The clinical phenotype of children with KCNH2 variants is closely associated with the affected functional domain. Patients with pore-domain variants exhibit more pronounced QTc prolongation and a higher risk of malignant arrhythmias. Genotype-phenotype analysis provides important insights for clinical risk stratification, treatment selection and prognosis assessment.

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[Clinical and genetic characteristics of 15 pediatric cases of long QT syndrome type 2 caused by KCNH2 variants].

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