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Novel Compound Heterozygous Variants in the LHCGR Gene in a Genetically Male Patient with Female External Genitalia

机译:女性外生殖器遗传男性患者LHCGR基因中的新型复合杂合变异。

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摘要

The LHCGR gene encodes a G-protein coupled receptor that plays a pivotal role in sexual differentiation in males, ovarian development in females and in fertility via its interaction with luteinizing hormone and chorionic gonadotropin. Inactive variants of the LHCGR gene cause Leydig cell hypoplasia (LCH), which is a rare disease and one of the causes of disorder of sexual differentiation (DSD) in males. The aim of this work was to clarify the clinical and molecular characteristics of a 2.75 year old patient with type 1 LCH. Whole exome sequencing was performed for the patient family and variants in the LHCGR gene were validated by Sanger sequencing. Pathogenicity of the missense variant was evaluated by multiple in silico tools. Our Chinese patient, who exhibited DSD, had female external genitalia (normal labia majora and minora, external opening of urethra under the clitoris and blind-ended vagina) and bilateral testis tissues in the inguinal region. Genetic sequencing revealed compound heterozygous variants in the LHCGR gene in the patient, including a novel missense variant in exon 4 (c.349G>A, p.Gly117Arg) and a novel nonsense variant in exon 10 (c.878C>A, p.Ser293*). The missense variant is in the first leucine-rich repeat domain of the LHCGR protein, which is predicted to affect ligand recognition and binding affinity and thus protein function. The patient is molecularly and clinically diagnosed with type 1 LCH, which is caused by novel, compound heterozygous variants of the LHCGR gene. We believe this report will serve to expand the genotypic spectrum of LHCGR variants.
机译:LHCGR基因编码一个G蛋白偶联受体,通过与黄体生成激素和绒毛膜促性腺激素的相互作用,在男性的性分化,女性的卵巢发育以及生育能力中起关键作用。 LHCGR基因的无活性变异会导致Leydig细胞发育不全(LCH),这是一种罕见的疾病,也是男性性分化障碍(DSD)的原因之一。这项工作的目的是阐明一名2.75岁的1型LCH患者的临床和分子特征。对患者家族进行了完整的外显子组测序,并通过Sanger测序验证了LHCGR基因的变异。该错义变体的致病性通过多种计算机模拟工具进行了评估。我们的中国患者表现出DSD,女性外生殖器(大阴唇和小阴唇正常,阴蒂和盲端阴道下尿道外开口)和腹股沟区双侧睾丸组织。遗传测序揭示了患者LHCGR基因中的复合杂合变体,包括外显子4中的新型错义变体(c.349G> A,p.Gly117Arg)和外显子10中新型的无义变体(c.878C> A,p.6)。 Ser293 *)。错义变体在LHCGR蛋白的第一个富含亮氨酸的重复结构域中,预计将影响配体识别和结合亲和力,从而影响蛋白功能。对该患者进行分子和临床诊断为1型LCH,这是由LHCGR基因的新型复合杂合变异体引起的。我们相信该报告将有助于扩大LHCGR变体的基因型谱。

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