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Selective activation of human heat shock gene transcription by nitrosourea antitumor drugs mediated by isocyanate-induced damage and activation of heat shock transcription factor.

机译:亚硝基脲抗肿瘤药通过异氰酸酯介导的损伤和热激转录因子的激活选择性激活人类热激基因的转录。

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摘要

Treatment of cultured human tumor cells with the chloroethylnitrosourea antitumor drug 1,3-bis(2-chloroethyl)-1-nitrosourea (BCNU) selectively induces transcription and protein synthesis of a subset of the human heat shock or stress-induced genes (HSP90 and HSP70) with little effect on other stress genes or on expression of the c-fos, c-myc, or beta-actin genes. The active component of BCNU and related compounds appears to be the isocyanate moiety that causes carbamoylation of proteins and nucleic acids. Transcriptional activation of the human HSP70 gene by BCNU is dependent on the heat shock element and correlates with the level of heat shock transcription factor and its binding to the heat shock element in vivo. Unlike activation by heat or heavy metals, BCNU-mediated activation is strongly dependent upon new protein synthesis. This suggests that BCNU-induced, isocyanate-mediated damage to newly synthesized protein(s) may be responsible for activation of the heat shock transcription factor and increased transcription of the HSP90 and HSP70 genes.
机译:用氯乙基亚硝基脲抗肿瘤药1,3-双(2-氯乙基)-1-亚硝基脲(BCNU)处理培养的人类肿瘤细胞可选择性诱导人类热休克或应激诱导基因(HSP90和HSP70)对其他应激基因或c-fos,c-myc或β-肌动蛋白基因的表达影响很小。 BCNU和相关化合物的活性成分似乎是引起蛋白质和核酸氨基甲酰化的异氰酸酯部分。 BCNU对人类HSP70基因的转录激活取决于热休克元件,并且与体内热休克转录因子的水平及其与热休克元件的结合有关。与通过热或重金属激活不同,BCNU介导的激活强烈依赖于新的蛋白质合成。这表明,BCNU诱导的,异氰酸酯介导的对新合成蛋白的破坏可能与热休克转录因子的激活以及HSP90和HSP70基因转录的增加有关。

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