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SecB is a bona fide generalized chaperone in Escherichia coli

机译:SecB是大肠杆菌中的真正广义分子伴侣

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摘要

It is known that the DnaK and Trigger Factor (TF) chaperones cooperate in the folding of newly synthesized cytosolic proteins in Escherichia coli. We recently showed that despite a very narrow temperature range of growth and high levels of aggregated cytosolic proteins, E. coli can tolerate deletion of both chaperones, suggesting that other chaperones might be involved in this process. Here, we show that the secretion-dedicated chaperone SecB efficiently suppresses both the temperature sensitivity and the aggregation-prone phenotypes of a strain lacking both TF and DnaK. SecB suppression is independent of a productive interaction with the SecA subunit of the translocon. Furthermore, in vitro cross-linking experiments demonstrate that SecB can interact both co- and posttranslationally with short nascent chains of both secretory and cytosolic proteins. Finally, we show that such cotranslational substrate recognition by SecB is greatly suppressed in the presence of ribosome-bound TF, but not by DnaK. Taken together, our data demonstrate that SecB acts as a bona fide generalized chaperone.
机译:已知在大肠杆菌中,DnaK和触发因子(TF)分子伴侣在新合成的胞质蛋白折叠中协同作用。我们最近表明,尽管生长温度范围非常狭窄并且胞浆蛋白的聚集水平很高,但是大肠杆菌可以耐受两种分子伴侣的缺失,这表明其他分子伴侣可能也参与了这一过程。在这里,我们表明,分泌专用的伴侣蛋白SecB有效地抑制了同时缺乏TF和DnaK的菌株的温度敏感性和易于聚集的表型。 SecB抑制独立于与转位子的SecA亚基的有效相互作用。此外,体外交联实验表明,SecB可以与分泌蛋白和胞质蛋白的短新生链发生共翻译和翻译后相互作用。最后,我们显示在核糖体结合的TF存在下,SecB对这种共翻译底物的识别受到了极大的抑制,但DnaK却没有。两者合计,我们的数据表明SecB充当真诚的广义伴侣。

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