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Expanded Metabolic Reconstruction of Helicobacter pylori (iIT341 GSM/GPR): an In Silico Genome-Scale Characterization of Single- and Double-Deletion Mutants

机译:幽门螺杆菌(iIT341 GSM / GPR)的扩展的代谢重建:单删除和双删除突变体的计算机基因组规模表征。

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摘要

Helicobacter pylori is a human gastric pathogen infecting almost half of the world population. Herein, we present an updated version of the metabolic reconstruction of H. pylori strain 26695 based on the revised genome annotation and new experimental data. This reconstruction, iIT341 GSM/GPR, represents a detailed review of the current literature about H. pylori as it integrates biochemical and genomic data in a comprehensive framework. In total, it accounts for 341 metabolic genes, 476 intracellular reactions, 78 exchange reactions, and 485 metabolites. Novel features of iIT341 GSM/GPR include (i) gene-protein-reaction associations, (ii) elementally and charge-balanced reactions, (iii) more accurate descriptions of isoprenoid and lipopolysaccharide metabolism, and (iv) quantitative assessments of the supporting data for each reaction. This metabolic reconstruction was used to carry out in silico deletion studies to identify essential and conditionally essential genes in H. pylori. A total of 128 essential and 75 conditionally essential metabolic genes were identified. Predicted growth phenotypes of single knockouts were validated using published experimental data. In addition, in silico double-deletion studies identified a total of 47 synthetic lethal mutants involving 67 different metabolic genes in rich medium.
机译:幽门螺杆菌是一种人类胃病原体,感染了世界近一半的人口。在这里,我们提出了基于修改后的基因组注释和新的实验数据的幽门螺杆菌菌株26695的代谢重建的更新版本。 iIT341 GSM / GPR的这种重建代表了有关幽门螺杆菌的最新文献的详细综述,因为它将生化和基因组数据整合到一个全面的框架中。总共,它占341个代谢基因,476个细胞内反应,78个交换反应和485个代谢产物。 iIT341 GSM / GPR的新功能包括(i)基因-蛋白质反应关联,(ii)元素和电荷平衡反应,(iii)对类异戊二烯和脂多糖代谢的更准确描述,以及(iv)支持数据的定量评估对于每个反应。该代谢重建被用于进行计算机缺失研究以鉴定幽门螺杆菌中的必需和有条件的必需基因。总共鉴定出128个必需和75个条件必需的代谢基因。使用公开的实验数据验证了单个基因敲除的预测生长表型。此外,计算机双删除研究确定了47种合成致死突变体,其中涉及丰富培养基中67种不同的代谢基因。

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