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果蝇主要热休克基因在体外的激活

Activation of the major drosophila heat-shock genes in vitro.

作者信息

Craine B L, Kornberg T

出版信息

Cell. 1981 Sep;25(3):671-81. doi: 10.1016/0092-8674(81)90174-4.

Abstract

Inactive Drosophila heat-shock genes of isolated diploid nuclei can be induced to a transcriptionally active state by exposure to cytoplasmic extracts from heat-shocked Drosophila cells. No effect was observed on histone gene transcription, and extracts from non-heat-shocked cells were ineffective. The factor in the cytoplasmic extract has been partially purified and characterized. It is protease-sensitive and heat-labile. A striking change accompanies in vitro activation that permits transcription by E. coli RNA polymerase of the chromatin 5' -distal to the structural genes at the 87A and 87C heat-shock gene loci; we have previously observed a similar change after in vivo heat-shock induction. That this change occurred in the absence of endogenous RNA polymerase II activity suggests that these changes may reflect the earliest event in gene activation. Inasmuch as activation also took place after histone H1 depletion, this histone does not appear to be essential for this step of gene activation.

摘要

分离的二倍体细胞核中无活性的果蝇热休克基因,通过暴露于热休克果蝇细胞的细胞质提取物中,可被诱导至转录活性状态。对组蛋白基因转录未观察到影响,且非热休克细胞的提取物无作用。细胞质提取物中的因子已被部分纯化并鉴定。它对蛋白酶敏感且热不稳定。体外激活伴随着一个显著变化,使得大肠杆菌RNA聚合酶能够转录位于87A和87C热休克基因位点结构基因5'端远端的染色质;我们之前在体内热休克诱导后也观察到了类似变化。这种变化在没有内源性RNA聚合酶II活性的情况下发生,表明这些变化可能反映了基因激活的最早事件。由于在组蛋白H1缺失后也发生了激活,因此这种组蛋白似乎对基因激活的这一步骤并非必不可少。

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