The androgen receptor in the testicular feminized (Tfm) mouse may be a product of internal translation initiation.

Receptor Pub Date : 1994-01-01
W W He, J K Lindzey, J L Prescott, M V Kumar, D J Tindall
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Abstract

Androgen insensitivity in the testicular feminized (Tfm) mouse is caused by frame-shift mutation in the androgen receptor (AR) mRNA, which results in a stop codon in the amino terminus. Despite this mutation, a smaller sized protein corresponding to the DNA- and steroid-binding domain of the AR can be synthesized from the cloned Tfm AR cDNA by in vitro translation. The Tfm AR construct was demonstrated to express a protein capable of binding androgen with an affinity similar to the cloned wild-type AR. Although the Tfm AR product failed to transactivate mouse mammary tumor virus-long terminal repeat (MMTV-LTR) promoter when low concentrations (100 ng) of Tfm AR vector were cotransfected, higher concentrations (5000 ng) resulted in a residual amount of transactivation, suggesting lower level transactivating capabilities. By cotransfecting the Tfm AR expression vector with the wild-type receptor, it was demonstrated that the product of the Tfm AR gene is capable of inhibiting the transactivation activity of the wild-type receptor. These data suggest that although the Tfm AR mRNA fails to produce a full-length AR because of the frame-shift mutation, a smaller protein capable of binding both steroid and DNA can be produced by translation from an internal initiation codon. This product could account for the low levels of androgen-binding activity detected previously in the Tfm mouse.

睾丸雌性化(Tfm)小鼠的雄激素受体可能是内部翻译起始的产物。
睾丸雌性化(Tfm)小鼠雄激素不敏感是由雄激素受体(AR) mRNA的框架移位突变引起的,该突变导致氨基端出现一个停止密码子。尽管存在这种突变,但克隆的Tfm AR cDNA可以通过体外翻译合成与AR的DNA和类固醇结合域相对应的较小尺寸的蛋白质。实验证明,Tfm AR构建体表达了一种能够结合雄激素的蛋白,其亲和力与克隆的野生型AR相似。虽然低浓度(100 ng)的Tfm AR载体共转染时,Tfm AR产品未能激活小鼠乳腺肿瘤病毒长末端重复(MMTV-LTR)启动子,但高浓度(5000 ng)的Tfm AR载体导致剩余的反激活量,表明低水平的反激活能力。通过与野生型受体共转染Tfm AR表达载体,证实了Tfm AR基因产物能够抑制野生型受体的反激活活性。这些数据表明,尽管由于移框突变,Tfm AR mRNA不能产生全长AR,但可以通过内部起始密码子翻译产生能够结合类固醇和DNA的更小的蛋白质。该产品可以解释先前在Tfm小鼠中检测到的低水平雄激素结合活性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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