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枯草芽孢杆菌clpP突变体在葡萄糖饥饿期间的代谢扰动

Metabolic Perturbations in a Bacillus subtilis clpP Mutant during Glucose Starvation.

作者信息

Schultz Daniel, Schlüter Rabea, Gerth Ulf, Lalk Michael

机构信息

Institute of Biochemistry, University of Greifswald, 17487 Greifswald, Germany;

Imaging Center of the Department of Biology, University of Greifswald, 17487 Greifswald, Germany;

出版信息

Metabolites. 2017 Nov 24;7(4):63. doi: 10.3390/metabo7040063.

Abstract

Proteolysis is essential for all living organisms to maintain the protein homeostasis and to adapt to changing environmental conditions. ClpP is the main protease in , and forms complexes with different Clp ATPases. These complexes play crucial roles during heat stress, but also in sporulation or cell morphology. Especially enzymes of cell wall-, amino acid-, and nucleic acid biosynthesis are known substrates of the protease ClpP during glucose starvation. The aim of this study was to analyze the influence of a mutation on the metabolism in different growth phases and to search for putative new ClpP substrates. Therefore, 168 cells and an isogenic ∆ mutant were cultivated in a chemical defined medium, and the metabolome was analyzed by a combination of ¹H-NMR, HPLC-MS, and GC-MS. Additionally, the cell morphology was investigated by electron microscopy. The mutant showed higher levels of most glycolytic metabolites, the intermediates of the citric acid cycle, amino acids, and peptidoglycan precursors when compared to the wild-type. A strong secretion of overflow metabolites could be detected in the exo-metabolome of the mutant. Furthermore, a massive increase was observed for the teichoic acid metabolite CDP-glycerol in combination with a swelling of the cell wall. Our results show a recognizable correlation between the metabolome and the corresponding proteome data of mutant. Moreover, our results suggest an influence of ClpP on Tag proteins that are responsible for teichoic acids biosynthesis.

摘要

蛋白质水解对于所有生物体维持蛋白质稳态以及适应不断变化的环境条件至关重要。ClpP是(此处原文缺失相关信息)中的主要蛋白酶,并与不同的Clp ATP酶形成复合物。这些复合物在热应激期间发挥关键作用,在孢子形成或细胞形态方面也发挥作用。特别是在葡萄糖饥饿期间,细胞壁、氨基酸和核酸生物合成的酶是蛋白酶ClpP已知的底物。本研究的目的是分析(此处原文缺失相关信息)突变对不同生长阶段代谢的影响,并寻找可能的新ClpP底物。因此,将168细胞和同基因的∆突变体在化学成分确定的培养基中培养,并通过¹H-NMR、HPLC-MS和GC-MS联用分析代谢组。此外,通过电子显微镜研究细胞形态。与野生型相比,突变体显示大多数糖酵解代谢物、柠檬酸循环中间体、氨基酸和肽聚糖前体的水平更高。在突变体的胞外代谢组中可检测到溢流代谢物的强烈分泌。此外,观察到磷壁酸代谢物CDP-甘油大量增加,同时细胞壁肿胀。我们的结果显示突变体的代谢组与相应蛋白质组数据之间存在可识别的相关性。此外,我们的结果表明ClpP对负责磷壁酸生物合成的Tag蛋白有影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8a2d/5746743/3890c86028f7/metabolites-07-00063-g001a.jpg

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