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Hypogonadism in a patient with two novel mutations of the luteinizing hormone β-subunit gene expressed in a compound heterozygous form

机译:以复合杂合子形式表达的黄体生成素β亚基基因的两个新突变患者的性腺功能减退

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摘要

CONTEXT: \ud\udLH gene mutations are rare; only four mutations have been described. The affected individuals are hypogonadal.\ud\udPATIENT: \ud\udWe describe the clinical features of a 31-yr-old man who presented with delayed puberty and azoospermia and was found to have hypogonadism associated with an absence of circulating LH.\ud\udMAIN OUTCOME MEASURES AND RESULTS: \ud\udThe patient had a 12-bp deletion in exon 2 in the LH β-subunit gene and a mutation of the 5' splice site IVS2+1G→T in the same gene present in a compound heterozygous state. The first mutation predicts a deletion of four leucines of the hydrophobic core of the signal peptide. The second mutation disrupts the splicing of mRNA, generating a gross abnormality in the processing. The patient's heterozygous parents were clinically normal. The phenotype of a 16-yr-old sister of the proband, carrying the same mutations, was characterized by normal pubertal development and oligomenorrhea.\ud\udCONCLUSION: \ud\udThis report unravels two novel mutations of the LH gene critical for synthesis and activity of the LH molecule. The insight gained from the study is that normal pubertal maturation in women can occur in a state of LH deficiency, whereas LH is essential for maturation of Leydig cells and thus steroidogenesis, puberty, and spermatogenesis in man. These mutations should be considered in girls and boys with selective deficiency of LH.
机译:语境:\ ud \ udLH基因突变很少见;仅描述了四个突变。受影响的个体是性腺功能减退。\ ud \ ud患者:\ ud \ ud我们描述了一名31岁男性的临床特征,该男性表现出青春期延迟和无精子症,被发现患有性腺功能减退症与缺乏循环性LH相关。 \ ud主要观察指标和结果:\ ud \ ud患者的LHβ亚基基因第2外显子缺失12 bp,且化合物中同一基因的5'剪接位点IVS2 + 1G→T突变杂合状态。第一突变预测信号肽的疏水核心的四个亮氨酸的缺失。第二个突变破坏了mRNA的剪接,在加工过程中产生了明显的异常。该患者的杂合子父母在临床上是正常的。先证者的一个16岁姐姐的表型带有相同的突变,其特征是正常的青春期发育和少经。\ ud \ ud结论:\ ud \ ud本报告揭示了LH基因的两个新突变,这些突变对于合成和LH分子的活性。从这项研究中得出的见解是,女性的正常青春期成熟可以在LH缺乏的状态下发生,而LH对于Leydig细胞的成熟以及男人的类固醇生成,青春期和精子生成至关重要。在LH选择性缺乏的男孩和女孩中应考虑这些突变。

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