体嵌合体致雄激素不敏感2例

N. Nokoff, S. Travers, N. Meeks
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引用次数: 1

摘要

雄激素不敏感综合征(AIS)是由雄激素受体(AR)编码基因突变引起的。AIS的发病率估计为99,000分之一。完全雄激素不敏感综合征(CAIS)的特点是核型为46,xy,外生殖器呈现典型的女性特征,由雄激素受体丧失功能的突变引起。部分雄激素不敏感综合征(PAIS)是由AR的部分功能突变丧失引起的。PAIS很少是由AR突变的体细胞嵌合引起的,而不是由次形变异引起的。我们提出了两例由体细胞嵌合引起的PAIS,一个是由一种新的无义突变引起的,另一个是由CAIS中先前报道的错义突变引起的。两名非典型生殖器患者因性发育障碍来到我们的多学科诊所,并进行了AR测序作为诊断评估的一部分。病例1,AR测序显示无义突变c.1331T > a的嵌合性;p.Leu444Ter。这种突变以前没有报道过,但据推测具有致病性。案例二,AR测序显示一个马赛克错义突变,c.2279C b> a;p.Ser760Tyr,以前在CAIS中有报道,但在PAIS中没有报道。类似的表型可能是由于处于完全丧失功能的马赛克状态的AR突变或在所有组织或马赛克状态下部分损害蛋白质功能的亚形态突变造成的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Two cases of androgen insensitivity due to somatic mosaicism
Abstract Androgen insensitivity syndrome (AIS) is caused by mutations in the gene encoding the androgen receptor (AR). The incidence of AIS is estimated to be 1 in 99,000. Complete androgen insensitivity syndrome (CAIS) is characterized by a 46,XY karyotype with external genitalia that appear typically female and results from mutations that render the androgen receptor non-functional. Partial androgen insensitivity syndrome (PAIS) results from partial loss of function mutations in AR. Rarely, PAIS results from somatic mosaicism for an AR mutation and not from a hypomorphic variant. We present two cases of PAIS due to somatic mosaicism, one caused by a novel nonsense mutation and one caused by a missense mutation previously reported in CAIS. Two patients with atypical genitalia presented to our multidisciplinary clinic for disorders of sex development and sequencing of AR was performed as part of the diagnostic evaluation. In case one, AR sequencing revealed mosaicism for a nonsense mutation, c.1331T > A; p.Leu444Ter. This mutation has not previously been reported, but is presumed to be pathogenic. In case two, AR sequencing revealed a mosaic missense mutation, c.2279 C > A; p.Ser760Tyr, which has previously been reported in CAIS but not in PAIS. Similar phenotypes may result from AR mutations that are present in a mosaic state with full loss of function or hypomorphic mutations that partially impair the function of the protein in either all tissues or in a mosaic state.
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来源期刊
AIMS Genetics
AIMS Genetics GENETICS & HEREDITY-
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