Wong Hao Yun, Hoogerbrugge Jos W, Pang Kar Lok, van Leeuwen Marije, van Royen Martin E, Molier Michel, Berrevoets Cor A, Dooijes Dennis, Dubbink Hendrikus Jan, van de Wijngaart Dennis J, Wolffenbuttel Katja P, Trapman Jan, Kleijer Wim J, Drop Stenvert L S, Grootegoed J Anton, Brinkmann Albert O
Department of Reproduction and Development, Erasmus MC, Rotterdam, The Netherlands.
Mol Cell Endocrinol. 2008 Sep 24;292(1-2):69-78. doi: 10.1016/j.mce.2008.06.016. Epub 2008 Jul 5.
A novel mutation F826L located within the ligand binding domain (LBD) of the human androgen receptor (AR) was investigated. This mutation was found in a boy with severe penoscrotal hypospadias (classified as 46,XY DSD). The AR mutant F826L appeared to be indistinguishable from the wild-type AR, with respect to ligand binding affinity, transcriptional activation of MMTV-luciferase and ARE2-TATA-luciferase reporter genes, protein level in genital skin fibroblasts (GSFs), and sub-cellular distribution in transfected cells. However, an at least two-fold higher NH2-/COOH-terminal domain interaction was found in luciferase and GST pull-down assays. A two-fold increase was also observed for TIF2 (transcription intermediary factor 2) co-activation of the AR F826L COOH-terminal domain. This increase could not be explained by a higher stability of the mutant protein, which was within wild-type range. Repression of transactivation by the nuclear receptor co-repressor (N-CoR) was not affected by the AR F826L mutation. The observed properties of AR F826L would be in agreement with an increased activity rather than with a partial defective AR transcriptional activation. It is concluded that the penoscrotal hypospadias in the present case is caused by an as yet unknown mechanism, which still may involve the mutant AR.
对位于人类雄激素受体(AR)配体结合域(LBD)内的一种新型突变F826L进行了研究。该突变在一名患有严重阴茎阴囊型尿道下裂(分类为46,XY性发育障碍)的男孩中被发现。AR突变体F826L在配体结合亲和力、MMTV - 荧光素酶和ARE2 - TATA - 荧光素酶报告基因的转录激活、生殖器皮肤成纤维细胞(GSF)中的蛋白水平以及转染细胞中的亚细胞分布方面,似乎与野生型AR没有区别。然而,在荧光素酶和GST下拉实验中发现其NH2 - /COOH - 末端结构域相互作用至少高出两倍。AR F826L COOH - 末端结构域的TIF2(转录中介因子2)共激活也观察到两倍的增加。这种增加不能用突变蛋白更高的稳定性来解释,其稳定性在野生型范围内。核受体共抑制因子(N - CoR)对反式激活的抑制不受AR F826L突变的影响。观察到的AR F826L的特性与活性增加一致,而不是与部分缺陷的AR转录激活一致。结论是本病例中的阴茎阴囊型尿道下裂是由一种尚不清楚的机制引起的,该机制可能仍涉及突变的AR。