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一种共有序列聚合物可抑制热休克基因的体内表达。

A consensus sequence polymer inhibits in vivo expression of heat shock genes.

作者信息

Xiao H, Lis J T

出版信息

Mol Cell Biol. 1986 Sep;6(9):3200-6. doi: 10.1128/mcb.6.9.3200-3206.1986.

Abstract

Promoter function for hsp70 gene expression in Drosophila melanogaster was studied with an in vivo competition assay. A polymer of 40 tandem copies of the pair of regulatory elements of the hsp70 gene was constructed and cloned into a plasmid vector. Various marked genes were cotransfected with the polymer plasmid into Schneider line 2 cells, and their expression was determined by enzyme activity measurements. The polymer dramatically inhibited expression of cotransfected hsp70, hsp26, and hsp83 genes, but not cotransfected copia and histone genes. Our results indicate that in vivo, a trans-acting, positive regulatory factor, which can be titrated by heat shock consensus sequences, is required for activation of heat shock genes and is specific for these genes; the coordinate induction of different heat shock genes appears to be mediated by similar, but not identical, interactions of the trans-acting induction factor and the cis-acting heat shock consensus sequences; and the uninduced or basal level expression of the transfected hsp70 gene is also due to interaction of the consensus sequence with a positively acting factor.

摘要

利用体内竞争分析方法对黑腹果蝇hsp70基因表达的启动子功能进行了研究。构建了由40个hsp70基因调控元件对串联拷贝组成的聚合物,并将其克隆到质粒载体中。将各种标记基因与聚合物质粒共转染到施奈德2号线细胞中,并通过酶活性测量来确定它们的表达。该聚合物显著抑制了共转染的hsp70、hsp26和hsp83基因的表达,但不抑制共转染的考皮阿和组蛋白基因的表达。我们的结果表明,在体内,热休克基因的激活需要一种可被热休克共有序列滴定的反式作用正调控因子,且该因子对这些基因具有特异性;不同热休克基因的协同诱导似乎是由反式作用诱导因子和顺式作用热休克共有序列的相似但不完全相同的相互作用介导的;转染的hsp70基因的未诱导或基础水平表达也是由于共有序列与正性作用因子的相互作用所致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4a31/367056/5e2c5324aeb9/molcellb00093-0187-a.jpg

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