芳烃受体抑制基因的鉴定及其Pro185Ala多态性与小阴茎的关系。

Teratology Pub Date : 2002-01-01 DOI:10.1002/TERA.1093
H. Fujita, R. Kosaki, H. Yoshihashi, T. Ogata, M. Tomita, T. Hasegawa, Takao Takahashi, N. Matsuo, K. Kosaki
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引用次数: 53

摘要

胎儿的遗传背景与胎儿接触致畸物后的异常发育有关。在啮齿类动物中,子宫内接触二恶英会影响雄性外生殖器发育。二恶英的作用是通过芳烃受体(AHR)及其结合蛋白——芳烃受体核转运子(ARNT)介导的。在小鼠中,芳烃受体抑制因子(AHRR)与ARNT结合,与AHR竞争,在AHR信号传导中起关键的负调控作用。我们试图描述人类AHRR基因的特征,并研究AHRR多态性与小阴茎(一种男性化不足的表型)发生率之间的关系。方法利用公开的人类基因组序列草案,鉴定和表征小鼠AHRR的人类同源物。通过对汇总的人类基因组DNA进行直接测序检测AHRR蛋白多态性后,我们评估了该多态性与存在或不存在小阴茎(< -2.5 SD)之间的关系。结果人类AHRR蛋白序列(715个残基)与小鼠AHRR蛋白序列同源性为81%。在PAS-A区和高度保守的富含精氨酸/半胱氨酸的RCFRCRL/VRC区之间鉴定出Pro185Ala多态性。46%(27/59)的小阴茎患者和27%(22/80)的对照组为185Pro纯合子;这种频率差异是显著的(P = 0.03)。结论ahr 185Pro等位基因的低合性可能增加胎儿对子宫内二恶英暴露的男性化不足的易感性,可能是通过ahr介导的信号传导抑制减弱。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characterization of the aryl hydrocarbon receptor repressor gene and association of its Pro185Ala polymorphism with micropenis.
BACKGROUND Genetic background of a fetus contributes to the abnormal development after teratogen exposure. In rodents, in utero exposure to dioxins affects male external genital development. The effects of dioxins are mediated via the aryl hydrocarbon receptor (AHR) and its binding protein, aryl hydrocarbon receptor nuclear translocator (ARNT). In mice, aryl hydrocarbon receptor repressor (AHRR), which binds to ARNT in competition with AHR, plays a critical negative regulatory role in AHR signaling. We attempt to characterize the human AHRR gene and investigate the relationship between AHRR polymorphisms and the incidence of micropenis, a phenotype of undermasculinization. METHODS We identified and characterized the human homolog of mouse AHRR, taking advantage of the publicly available draft version of the human genome sequence. After detecting an AHRR protein polymorphism by the direct sequencing of pooled human genomic DNA, we evaluated the association between the polymorphism and the presence or absence of micropenis (< -2.5 SD) in patients with micropenis and control subjects. RESULTS The deduced sequence for human AHRR (715 residues) and the mouse AHRR protein exhibited 81% sequence homology to each other. The Pro185Ala polymorphism was identified between the PAS-A region and the highly conserved arginine/cysteine-rich RCFRCRL/VRC region. Forty-six percent (27/59) of patients with micropenis and 27% (22/80) of the controls were homozygous for 185Pro; this difference in frequencies was significant (P = 0.03). CONCLUSIONS Homozygosity for the 185Pro allele of AHRR may increase the susceptibility of a fetus to the undermasculinizing effects of dioxin exposure in utero, presumably through the diminished inhibition of AHR-mediated signaling.
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