Jones T R, Cole M D
Department of Molecular Biology, Lewis Thomas Laboratory, Princeton University, New Jersey 08544.
Mol Cell Biol. 1987 Dec;7(12):4513-21. doi: 10.1128/mcb.7.12.4513-4521.1987.
Expression of the c-myc gene can be controlled by transcriptional or posttranscriptional mechanisms (or both), depending on the cell type and the growth conditions. An important mechanism of posttranscriptional regulation is modulation of cytoplasmic c-myc mRNA stability; normal human and murine c-myc mRNAs have cytoplasmic half-lives of 30 min or less. To elucidate the c-myc sequences which impart this unusually high rate of cytoplasmic transcript turnover, we have constructed various deletion and hybrid c-myc genes and analyzed the cytoplasmic stability of the mRNAs produced from them in stably transfected murine fibroblasts. The results indicate that sequences contained within the 5' and 3' ends of the c-myc transcript can affect cytoplasmic stability. Specifically, the 3' untranslated sequences of c-myc exon 3 are required for, but do not ensure, a high rate of transcript turnover in the cytoplasm. Exon 2 coding sequences do not seem to be involved, and exon 1 sequences at the 5' end of the transcript have only a small effect on cytoplasmic transcript stability. The sequences that are primarily responsible for the short c-myc RNA half-life were localized to a region of 140 bases in the 3' untranslated region.
c-myc基因的表达可受转录或转录后机制(或两者)的控制,这取决于细胞类型和生长条件。转录后调控的一个重要机制是对细胞质中c-myc mRNA稳定性的调节;正常人和小鼠的c-myc mRNA在细胞质中的半衰期为30分钟或更短。为了阐明赋予这种细胞质转录本异常高周转率的c-myc序列,我们构建了各种缺失和杂交的c-myc基因,并分析了它们在稳定转染的小鼠成纤维细胞中产生的mRNA的细胞质稳定性。结果表明,c-myc转录本5'端和3'端包含的序列可影响细胞质稳定性。具体而言,c-myc外显子3的3'非翻译序列是细胞质中转录本高周转率所必需的,但不能确保这一点。外显子2编码序列似乎不参与其中,转录本5'端的外显子1序列对细胞质转录本稳定性的影响很小。主要负责c-myc RNA短半衰期的序列定位于3'非翻译区140个碱基的区域。