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[从细胞核到细胞质的信息传递过程中基因表达的调控]

[Regulation of genetic expression during the transfer of information from the nucleus to the cytoplasm].

作者信息

Tanguay R M, Nicole L, Vincent M, Moisan L, Girard J

出版信息

Rev Can Biol. 1980 Mar;39(1):9-20.

PMID:7005996
Abstract

In eukaryotes, the transfer of genetic information from the genome to its final site of phenotypic expression is a multistep process. These steps are described and the mechanisms of regulation operating at these various levels are reviewed. The heat shock response in two diptera, Drosophila and Chironomus, is described as a model system to illustrate the existence of regulation mechanisms at different levels of genetic information transfer. In Chironomus tentans like in Drosophila, a short heat shock (10 min, 39 degrees C) treatment induces the synthesis of at least 8 new proteins. This is accompanied by a drastic reduction in the synthesis of the normal proteins that in those synthesized prior to the shock. The localisation of these induced proteins has been studied by microdissection of the various intranuclear and intracellular compartments of salivary glands. While most of these have a ubiquitous distribution, one induced protein (34 000 Daltons) is exclusively localized in the nucleus. Another one (25 000 Daltons) is mainly concentrated in a particulate form which cosediments with ribosomes. Arsenite and anaerobiosis do not induce a heat shock mimicking response in Chironomus. The induction mechanisms as well as the transcriptional and translational controls operating during the heat shock response are discussed.

摘要

在真核生物中,遗传信息从基因组转移到其最终表型表达位点是一个多步骤过程。本文描述了这些步骤,并综述了在各个层面发挥作用的调控机制。以果蝇和摇蚊这两种双翅目昆虫的热休克反应作为模型系统,来说明在遗传信息转移的不同层面存在调控机制。与果蝇一样,对摇蚊进行短暂的热休克(10分钟,39摄氏度)处理会诱导至少8种新蛋白质的合成。与此同时,正常蛋白质的合成大幅减少,这些正常蛋白质是在热休克之前合成的。通过对唾液腺的各种核内和细胞内区室进行显微解剖,研究了这些诱导蛋白的定位。虽然其中大多数蛋白分布广泛,但有一种诱导蛋白(34000道尔顿)仅定位于细胞核中。另一种(25000道尔顿)主要以颗粒形式集中分布,与核糖体一起沉降。亚砷酸盐和厌氧环境不会在摇蚊中诱导出类似热休克的反应。本文还讨论了热休克反应过程中的诱导机制以及转录和翻译控制。

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