Analyzing the impact of T7L variants overexpression on the metabolic profile of Escherichia coli.

IF 3.5 3区 医学 Q2 ENDOCRINOLOGY & METABOLISM Metabolomics Pub Date : 2024-06-28 DOI:10.1007/s11306-024-02133-y
Manikyaprabhu Kairamkonda, Harshi Saxena, Khushboo Gulati, Krishna Mohan Poluri
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Abstract

Introduction: Exploring metabolic changes within host E. coli through an untargeted metabolomic study of T7L variants overexpression to optimize engineered endolysins for clinical/therapeutic use.

Aim and objective: This study aims to assess the impact of overexpressing T7L variants on the metabolic profiles of E. coli. The two variants considered include T7L-H37A, which has enhanced lytic activity compared to its wild-type protein, and T7L-H48K, a dead mutant with no significant activity.

Methods: 1H NMR-based metabolomics was employed to compare the metabolic profiles of E. coli cells overexpressing T7L wild-type protein and its variants.

Results: Overexpression of the T7L wild-type (T7L-WT) protein and its variants (T7L-H48K and T7L-H37A) was compared to RNAP overexpression in E. coli cells using 1H NMR-based metabolomics, analyzing a total of 75 annotated metabolites, including organic acids, amino acids, sugars, and nucleic acids. The results showed distinct clustering patterns for the two T7L variant groups compared with the WT, in which the dead mutant (H48K) group showed clustering close to that of RNAP. Pathway impact analysis revealed different effects of T7L variants on E. coli metabolic profiles, with T7L-H48K showing minimal alterations in energy and amino acid pathways linked to osmotic stress compared to noticeable alterations in these pathways for both T7L-H37A and T7L-WT.

Conclusions: This study uncovered distinct metabolic fingerprints when comparing the overexpression of active and inactive mutants of T7L lytic enzymes in E. coli cells. These findings could contribute to the optimization and enhancement of suitable endolysins as potential alternatives to antibiotics.

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分析 T7L 变体过表达对大肠杆菌代谢概况的影响。
简介:通过对 T7L 变体过表达的非靶向代谢组学研究,探索宿主大肠杆菌内的代谢变化,以优化用于临床/治疗的工程内溶素:本研究旨在评估过表达 T7L 变体对大肠杆菌代谢特征的影响。考虑的两个变体包括 T7L-H37A 和 T7L-H48K,前者与其野生型蛋白相比具有更强的溶菌活性,后者则是一种无明显活性的死亡突变体。方法:采用基于 1H NMR 的代谢组学方法比较过表达 T7L 野生型蛋白及其变体的大肠杆菌细胞的代谢谱:结果:采用基于 1H NMR 的代谢组学方法,比较了大肠杆菌细胞中过表达 T7L 野生型蛋白(T7L-WT)及其变体(T7L-H48K 和 T7L-H37A)与过表达 RNAP 的情况,共分析了 75 种注释代谢物,包括有机酸、氨基酸、糖类和核酸。结果表明,与 WT 相比,两个 T7L 变异组的聚类模式截然不同,其中死亡突变体(H48K)组的聚类接近于 RNAP 组。途径影响分析表明,T7L 变体对大肠杆菌代谢谱的影响不同,与 T7L-H37A 和 T7L-WT 相比,T7L-H48K 对与渗透压相关的能量和氨基酸途径的改变极小,而 T7L-H37A 和 T7L-WT 则对这些途径的改变明显:本研究在比较大肠杆菌细胞中T7L裂解酶活性突变体和非活性突变体的过表达时,发现了不同的代谢指纹。这些发现有助于优化和提高合适的内溶酶,使其成为抗生素的潜在替代品。
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来源期刊
Metabolomics
Metabolomics 医学-内分泌学与代谢
CiteScore
6.60
自引率
2.80%
发文量
84
审稿时长
2 months
期刊介绍: Metabolomics publishes current research regarding the development of technology platforms for metabolomics. This includes, but is not limited to: metabolomic applications within man, including pre-clinical and clinical pharmacometabolomics for precision medicine metabolic profiling and fingerprinting metabolite target analysis metabolomic applications within animals, plants and microbes transcriptomics and proteomics in systems biology Metabolomics is an indispensable platform for researchers using new post-genomics approaches, to discover networks and interactions between metabolites, pharmaceuticals, SNPs, proteins and more. Its articles go beyond the genome and metabolome, by including original clinical study material together with big data from new emerging technologies.
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