Avliyakulov Nuraly K, Hines Jane C, Ray Dan S
Molecular Biology Institute and Department of Microbiology, Immunology and Molecular Genetics, University of California-Los Angeles, 90095-1570, USA.
Eukaryot Cell. 2003 Aug;2(4):671-7. doi: 10.1128/EC.2.4.671-677.2003.
mRNA levels of several Crithidia fasciculata genes involved in DNA metabolism have previously been found to cycle as cells progress through the cell cycle. Octamer consensus sequences in the 5' untranslated regions (5' UTRs) of these transcripts were shown to be required for cycling of these mRNAs. The KAP3 gene encodes a kinetoplast histone H1-like DNA binding protein, and its mRNA levels cycle in parallel with those of the kinetoplast DNA topoisomerase (TOP2), dihydrofolate reductase-thymidylate synthase (DHFR-TS), and the large subunit of the nuclear single-stranded DNA binding protein (RPA1). KAP3 mRNA contains two octamer consensus sequences in its 3' UTR but none in its 5' UTR. Mutation of these octamer sequences was not sufficient to prevent cycling of a sequence-tagged KAP3 mRNA expressed from a plasmid. Mutation of an octamer sequence contained on the precursor transcript but not on the mRNA, in addition to mutation of the two octamer sequences in the 3' UTR, was necessary to abolish cycling of the mRNA. The requirement for a sequence not present on the mature mRNA indicates that regulation of the mRNA levels by the octamer sequences occurs at or prior to splicing of the transcript. Incompletely processed RNAs containing octamer sequences were also found to accumulate during the cell cycle when the mRNA levels were lowest. These RNA species hybridize to both the KAP3 coding sequence and that of the downstream drug resistance gene, indicating a lack of processing within the intergenic region separating these genes. We propose a cell cycle-dependent interference in transcript processing mediated by octamer consensus sequences as a mechanism contributing to the cycling of such transcripts.
先前已发现,随着细胞在细胞周期中进展,几种参与DNA代谢的克氏锥虫基因的mRNA水平会发生周期性变化。这些转录本的5'非翻译区(5'UTR)中的八聚体共有序列被证明是这些mRNA周期性变化所必需的。KAP3基因编码一种动质体组蛋白H1样DNA结合蛋白,其mRNA水平与动质体DNA拓扑异构酶(TOP2)、二氢叶酸还原酶-胸苷酸合成酶(DHFR-TS)以及核单链DNA结合蛋白(RPA1)大亚基的mRNA水平平行循环。KAP3 mRNA在其3'UTR中包含两个八聚体共有序列,但在其5'UTR中没有。这些八聚体序列的突变不足以阻止从质粒表达的带有序列标签的KAP3 mRNA的循环。除了3'UTR中两个八聚体序列的突变外,前体转录本上但mRNA上不存在的八聚体序列的突变对于消除mRNA的循环是必要的。对成熟mRNA上不存在的序列的需求表明,八聚体序列对mRNA水平的调节发生在转录本剪接时或之前。当mRNA水平最低时,在细胞周期中也发现含有八聚体序列的未完全加工的RNA会积累。这些RNA种类与KAP3编码序列和下游耐药基因的序列都杂交,表明在分隔这些基因的基因间区域内缺乏加工。我们提出,由八聚体共有序列介导的细胞周期依赖性转录本加工干扰是导致此类转录本循环的一种机制。