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在谷氨酸棒杆菌中,核糖体丰度和翻译延伸率的生长速率依赖性与大肠杆菌不同。

Growth-rate dependency of ribosome abundance and translation elongation rate in Corynebacterium glutamicum differs from that in Escherichia coli.

机构信息

Institute of Bio- and Geosciences, IBG-1: Biotechnology, Forschungszentrum Jülich, Jülich, Germany.

Institute of Biological Information Processing, IBI-1: Molecular and Cellular Physiology, Forschungszentrum Jülich, Jülich, Germany.

出版信息

Nat Commun. 2023 Sep 12;14(1):5611. doi: 10.1038/s41467-023-41176-y.

Abstract

Bacterial growth rate (µ) depends on the protein synthesis capacity of the cell and thus on the number of active ribosomes and their translation elongation rate. The relationship between these fundamental growth parameters have only been described for few bacterial species, in particular Escherichia coli. Here, we analyse the growth-rate dependency of ribosome abundance and translation elongation rate for Corynebacterium glutamicum, a gram-positive model species differing from E. coli by a lower growth temperature optimum and a lower maximal growth rate. We show that, unlike in E. coli, there is little change in ribosome abundance for µ <0.4 h in C. glutamicum and the fraction of active ribosomes is kept above 70% while the translation elongation rate declines 5-fold. Mathematical modelling indicates that the decrease in the translation elongation rate can be explained by a depletion of translation precursors.

摘要

细菌生长速率(µ)取决于细胞的蛋白质合成能力,因此取决于活性核糖体的数量及其翻译延伸速率。这些基本生长参数之间的关系仅在少数几种细菌物种中进行了描述,特别是大肠杆菌。在这里,我们分析了革兰氏阳性模式生物谷氨酸棒杆菌的核糖体丰度和翻译延伸速率对生长速率的依赖性,该生物的最适生长温度和最大生长速率均低于大肠杆菌。我们表明,与大肠杆菌不同,在 µ<0.4h 时,谷氨酸棒杆菌中的核糖体丰度几乎没有变化,并且活性核糖体的分数保持在 70%以上,而翻译延伸速率下降了 5 倍。数学建模表明,翻译延伸速率的降低可以用翻译前体的耗尽来解释。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e586/10497606/63b97f439089/41467_2023_41176_Fig1_HTML.jpg

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