Faber P W, van Rooij H C, van der Korput H A, Baarends W M, Brinkmann A O, Grootegoed J A, Trapman J
Department of Pathology, Erasmus University, Rotterdam, The Netherlands.
J Biol Chem. 1991 Jun 15;266(17):10743-9.
A full length human androgen receptor (hAR) cDNA was constructed from cDNA and genomic clones. Structurally the 10.6-kilobase (kb) hAR cDNA consists of a long 5'-untranslated region (5'-UTR, 1.1 kb), a previously described open reading frame (ORF, 2.7 kb) (Trapman, J., Klaassen, P., Kuiper, G. G. J. M., van der Korput, J. A. G. M., Faber, P. W., van Rooij, H. C. J., Geurts van Kessel, A., Voorhorst, M. M., Mulder, E., and Brinkmann, A. O. (1988) Biochem. Biophys. Res. Commun. 153, 241-248; Faber, P. W., Kuiper, G. G. J. M., van Rooij, H. C. J., van der Korput, J. A. G. M., Brinkmann, A. O., and Trapman, J. (1989) Mol. Cell. Endocrinol. 61, 257-262), and a very long 3'-untranslated region (3'-UTR, 6.8 kb). The complete 5'- and 3'-UTRs were found to be encoded by the previously reported first and eight protein coding exons of the hAR gene, respectively (Kuiper, G. G. J. M., Faber, P. W., van Rooij, H. C. J., van der Korput, J. A. G. M., Ris-Stalpers, C., Klaassen, P., Trapman, J., and Brinkmann, A. O. (1989) J. Mol. Endocrinol. 2, R1-R4). Two major sites of transcription initiation were identified in a 13-base pair region. DNA fragments spanning these transcription initiation sites conferred promoter activity upon a promoterless chloramphenicol acetyltransferase reporter gene construct. Two equally effective, functional polyadenylation signals (ATTAAA and CATAAA) at a mutual distance of 221 base pairs were detected. The ATTAAA hexamer sequence gave rise to multiple sites of poly(A) addition, whereas only one position was used following the CATAAA hexamer. In LNCaP prostatic carcinoma cells an alternatively spliced hAR mRNA species was identified which lacks 3 kb of the 3'-UTR.
从 cDNA 和基因组克隆构建了全长人雄激素受体(hAR)cDNA。从结构上看,10.6 千碱基(kb)的 hAR cDNA 由一个长的 5'非翻译区(5'-UTR,1.1 kb)、一个先前描述的开放阅读框(ORF,2.7 kb)(特拉普曼,J.,克拉斯森,P.,凯珀尔,G.G.J.M.,范德科尔普特,J.A.G.M.,法伯,P.W.,范罗伊,H.C.J.,居尔茨·范凯塞尔,A.,沃尔霍斯特,M.M.,穆尔德,E.,和布林克曼,A.O.(1988 年)生物化学与生物物理研究通讯 153,241 - 248;法伯,P.W.,凯珀尔,G.G.J.M.,范罗伊,H.C.J.,范德科尔普特,J.A.G.M.,布林克曼,A.O.,和特拉普曼,J.(1989 年)分子细胞内分泌学 61,257 - 262),以及一个非常长的 3'非翻译区(3'-UTR,6.8 kb)组成。发现完整的 5'-UTR 和 3'-UTR 分别由先前报道的 hAR 基因的第一个和第八个蛋白质编码外显子编码(凯珀尔,G.G.J.M.,法伯,P.W.,范罗伊,H.C.J.,范德科尔普特,J.A.G.M.,里斯 - 斯塔尔珀斯,C.,克拉斯森,P.,特拉普曼,J.,和布林克曼,A.O.(1989 年)分子内分泌学杂志 2,R1 - R4)。在一个 13 碱基对区域中鉴定出两个主要的转录起始位点。跨越这些转录起始位点的 DNA 片段赋予了无启动子氯霉素乙酰转移酶报告基因构建体启动子活性。检测到两个相互距离为 221 碱基对的同样有效的功能性聚腺苷酸化信号(ATTAAA 和 CATAAA)。ATTAAA 六聚体序列产生多个多聚腺苷酸化位点,而在 CATAAA 六聚体之后仅使用一个位置。在 LNCaP 前列腺癌细胞中鉴定出一种可变剪接的 hAR mRNA 种类,其缺少 3'-UTR 的 3 kb。