...
首页> 外文期刊>Nucleic acids research >Two closely linked transcription units within the 63B heat shock puff locus of D. melanogaster display strikingly different regulation
【24h】

Two closely linked transcription units within the 63B heat shock puff locus of D. melanogaster display strikingly different regulation

机译:D. melanogaster 63B热休克粉扑基因座中的两个紧密连接的转录单位显示出明显不同的调控

获取原文
           

摘要

We report the isolation and characterization of a cloned DNA of D. melanogaster, Dm4L, that is derived from the major heat shock puff site at 63B. This segment contains two closely linked genes that are each present once per Drosophila haploid genome. One of these, the hsp 83 gene, encodes an abundant heat shock mRNA that, unlike other major heat shock mRNAs, is also abundant in uninduced (23°) Kco cells. Although only a slight increase in level of total hsp 83 RNA can be detected after heat shock in Kco cells, the level of hsp 83 poly(A)+ mRNA increases more than 6-fold and the level of pulse-labeled hsp 83 RNA in total cellular RNA increases 11-fold relative to uninduced cells. In contrast, the levels of total, poly(A)+, and pulselabeled RNA homologous to the second gene, 63B-T2, are approximately the same in both induced and uninduced cells. Hence, even though these genes are separated by only one thousand base pairs, and, from in situ hybridization to polytene chromosomes, both lie within the heat shock puff, they display strikingly different regulatory properties. These results demonstrate that close linkage of a gene to a heat shock puff is not sufficient to render its expression heat inducible.
机译:我们报告的分离和鉴定的D. melanogaster,Dm4L,从63B主要热激泡芙站点的克隆DNA的特征。该区段包含两个紧密相连的基因,每个果蝇单倍体基因组均存在一次。其中之一是hsp 83基因,它编码丰富的热休克mRNA,与其他主要的热休克mRNA不同,它在未诱导的(23°)Kc o 细胞中也丰富。尽管在热休克后Kc o 细胞中只能检测到总hsp 83 RNA的轻微增加,但是hsp 83 poly(A) + mRNA的水平却增加了更多相对于未诱导的细胞,总细胞RNA中脉冲标记的hsp 83 RNA的水平增加了6倍。相反,在诱导细胞和未诱导细胞中,与第二个基因63B-T2同源的总poly(A) + 和脉冲标记RNA的水平大致相同。因此,即使这些基因仅相隔一千个碱基对,并且从原位杂交到多聚体染色体,都位于热激吹中,但它们显示出显着不同的调控特性。这些结果证明基因与热激粉扑的紧密连接不足以使其表达热诱导。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号