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Clinical Characteristics and Genetic Analyses of Patients with Idiopathic Hypogonadotropic Hypogonadism

促性腺激素减退症 医学 卡尔曼综合征 医学遗传学 GNRHR公司 遗传学 前脑无裂 SDHA 垂体机能减退 病因学 分子遗传学 复合杂合度 生物信息学 内科学 基因 内分泌学 表型 生物 疾病 促黄体激素 促性腺激素释放激素 激素 怀孕 2019年冠状病毒病(COVID-19) 传染病(医学专业) 胎儿 基因表达
作者
Nurdan Çiftçi,Ayşehan Akıncı,Ekrem Akbulut,Emine Çamtosun,İsmail Dündar,Mustafa Doğan,Leman Kayaş
出处
期刊:Journal of Clinical Research in Pediatric Endocrinology [Galenos Yayinevi]
卷期号:15 (2): 160-171 被引量:3
标识
DOI:10.4274/jcrpe.galenos.2023.2022-10-14
摘要

Idiopathic hypogonadotropic hypogonadism (IHH) is classified into two groups-Kalman syndrome and normosmic IHH (nIHH). Half of all cases can be explained by mutations in >50 genes. Targeted gene panel testing with nexrt generation sequencing (NGS) is required for patients without typical phenotypic findings. The aim was to determine the genetic etiologies of patients with IHH using NGS, including 54 IHH-associated genes, and to present protein homology modeling and protein stability analyzes of the detected variations.Clinical and demographic data of 16 patients (eight female), aged between 11.6-17.8 years, from different families were assessed. All patients were followed up for a diagnosis of nIHH, had normal cranial imaging, were without anterior pituitary hormone deficiency other than gonadotropins, had no sex chromosome anomaly, had no additional disease, and underwent genetic analysis with NGS between the years 2008-2021. Rare variants were classified according to the variant interpretation framework of the American College of Medical Genetics and Genomics (ACMG)/Association for Molecular Pathology. Changes in protein structure caused by variations were modeled using RoseTTAFold and changes in protein stability resulting from variation were analyzed.Half of the 16 had no detectable variation. Three (18.75%) had a homozygous (pathogenic) variant in the GNRHR gene, one (6.25%) had a compound heterozygous [likely pathogenic-variants of uncertain significance (VUS)] variant in PROK2 and four (25%) each had a heterozygous (VUS) variant in HESX1, FGF8, FLRT3 and DMXL2. Protein models showed that variants interpreted as VUS according to ACMG could account for the clinical IHH.The frequency of variation detection was similar to the literature. Modelling showed that the variant in five different genes, interpreted as VUS according to ACMG, could explain the clinical IHH.

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