Müllner E W, Kühn L C
Institut Suisse de Recherches Expérimentales sur le Cancer, Epalinges, Switzerland.
Cell. 1988 Jun 3;53(5):815-25. doi: 10.1016/0092-8674(88)90098-0.
Expression of the human transferrin receptor (hTR) and its mRNA is strongly induced by iron deprivation. By measuring transcription elongation rates, levels of hTR-specific nuclear RNA, and mRNA half-lives, we found this regulation to occur posttranscriptionally in the cytoplasm. Analysis of hTR cDNA mutants with deletions in the 3' untranslated region revealed the existence of two distinct domains, both of which are essential for regulation in mouse L cells. The regulated phenotype correlates with the presence of a stem-loop structure predicted by a computer algorithm. Expression of point and deletion mutants affecting the stem-loop confirmed the requirement for this secondary structure in regulation. The 3' untranslated region of hTR cDNA was sufficient to confer iron-dependent regulation on another gene.
人体转铁蛋白受体(hTR)及其mRNA的表达在缺铁时会被强烈诱导。通过测量转录延伸率、hTR特异性核RNA水平和mRNA半衰期,我们发现这种调节发生在细胞质中的转录后阶段。对3'非翻译区有缺失的hTR cDNA突变体进行分析,发现存在两个不同的结构域,这两个结构域对于小鼠L细胞中的调节都是必不可少的。这种受调节的表型与计算机算法预测的茎环结构的存在相关。影响茎环的点突变体和缺失突变体的表达证实了这种二级结构在调节中的必要性。hTR cDNA的3'非翻译区足以赋予另一个基因铁依赖性调节作用。