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人类细胞中热休克元件结合活性与HSP70基因转录率的协同变化。

Coordinate changes in heat shock element-binding activity and HSP70 gene transcription rates in human cells.

作者信息

Mosser D D, Theodorakis N G, Morimoto R I

机构信息

Department of Biochemistry, Molecular Biology, Northwestern University, Evanston, Illinois 60208.

出版信息

Mol Cell Biol. 1988 Nov;8(11):4736-44. doi: 10.1128/mcb.8.11.4736-4744.1988.

Abstract

Activation of human heat shock gene transcription by heat shock, heavy metal ions, and amino acid analogs required the heat shock element (HSE) in the HSP70 promoter. Both heat shock- and metal ion-induced HSP70 gene transcription occurred independently of protein synthesis, whereas induction by amino acid analogs required protein synthesis. We identified a HSE-binding activity from control cells which was easily distinguished by a gel mobility shift assay from the stress-induced HSE-binding activity which appeared following heat shock or chemically induced stress. The kinetics of HSP70 gene transcription paralleled the rapid appearance of stress-induced HSE-binding activity. During recovery from heat shock, both the rate of HSP70 gene transcription and stress-induced HSE-binding activity levels declined and the control HSE-binding activity reappeared. The DNA contacts of the control and stress-induced HSE-binding activities deduced by methylation interference were similar but not identical. While stable complexes with HSE were formed with extracts from both control and stressed cells in vitro at 25 degrees C, only the stress-induced complex was detected when binding reactions were performed at elevated temperatures.

摘要

热休克、重金属离子和氨基酸类似物对人类热休克基因转录的激活作用需要HSP70启动子中的热休克元件(HSE)。热休克和金属离子诱导的HSP70基因转录均独立于蛋白质合成发生,而氨基酸类似物诱导则需要蛋白质合成。我们从对照细胞中鉴定出一种HSE结合活性,通过凝胶迁移率变动分析可轻松将其与热休克或化学诱导应激后出现的应激诱导HSE结合活性区分开来。HSP70基因转录的动力学与应激诱导HSE结合活性的快速出现平行。在从热休克恢复过程中,HSP70基因转录速率和应激诱导HSE结合活性水平均下降,对照HSE结合活性重新出现。通过甲基化干扰推断出的对照和应激诱导HSE结合活性的DNA接触相似但不完全相同。虽然在25℃下体外对照和应激细胞提取物均能与HSE形成稳定复合物,但在升高温度下进行结合反应时,仅检测到应激诱导复合物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/60d5/365565/c27fb282beb8/molcellb00071-0160-a.jpg

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