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热休克诱导的蛋白质合成负责关闭四膜虫中的hsp70转录。

Heat-shock-induced protein synthesis is responsible for the switch-off of hsp70 transcription in Tetrahymena.

作者信息

Amaral M D, Galego L, Rodrigues-Pousada C

机构信息

Laboratório de Genética Molecular, Instituto Gulbenkian de Ciência, Oeiras, Portugal.

出版信息

Biochim Biophys Acta. 1993 Aug 19;1174(2):133-42. doi: 10.1016/0167-4781(93)90107-o.

Abstract

We had previously described that new RNA synthesis is required for expression of the heat shock protein HSP70. Here, we find that the HSP70 mRNA decreases its levels under stress conditions, heat shock (HS) or arsenite (As), and that its levels start to decline at the same time as maximal HSPs synthesis (including HSP70) occurs. This suggests that regulation of the hsp70 gene is mainly exerted at the transcriptional level. Accumulation of the HSP70 mRNA in cells stressed in presence of cycloheximide (CHX), indicates that (a) protein(s) non-existent before stress, possibly HSP70 itself (which is shown here to be relatively stable), is involved in negatively regulating hsp70 expression. Since degradation of the HSP70 mRNA is also shown to occur in cells heat-shocked under CHX, as seen from decay of its levels upon addition of actinomycin D (AMD), the protein(s) must repress hsp70 expression at the transcriptional level. Other conditions that affect normal protein synthesis, namely the translation inhibitor puromycin and the arginine-analog canavanine (shown here to be stress inducers in Tetrahymena pyriformis), also cause a delay in transcription-arrest of the HSP70 mRNA. Under severe stress conditions of HS (36 degrees C) or As (350 microM), the levels of HSP70 mRNA are higher than under mild stress conditions, however, no significant difference is seen in the pattern of HSP70 mRNA decay.

摘要

我们之前曾描述过,热休克蛋白HSP70的表达需要新的RNA合成。在此,我们发现HSP70 mRNA在应激条件下,即热休克(HS)或亚砷酸盐(As)作用下会降低其水平,并且其水平在最大HSPs合成(包括HSP70)发生的同时开始下降。这表明hsp70基因的调控主要在转录水平发挥作用。在存在环己酰亚胺(CHX)的情况下应激的细胞中HSP70 mRNA的积累表明,应激前不存在的一种(或多种)蛋白质,可能是HSP70本身(此处显示其相对稳定),参与对hsp70表达的负调控。由于从添加放线菌素D(AMD)后其水平的衰减可以看出,HSP70 mRNA的降解也发生在CHX存在下热休克的细胞中,所以这种蛋白质(或这些蛋白质)必定在转录水平抑制hsp70表达。其他影响正常蛋白质合成的条件,即翻译抑制剂嘌呤霉素和精氨酸类似物刀豆氨酸(此处显示其为梨形四膜虫中的应激诱导剂),也会导致HSP70 mRNA转录停滞的延迟。在HS(36摄氏度)或As(350微摩尔)的严重应激条件下,HSP70 mRNA的水平高于轻度应激条件下的水平,然而,HSP70 mRNA的衰减模式没有显著差异。

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