The pentose phosphate pathway is essential for the resistance of Gluconacetobacter diazotrophicus PAL5 to zinc.

IF 4.2 3区 生物学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Júlia Rosa Moreira, Fabiano Silva Soares, Kariny Marley de Castro Martins, Vivian Ribeiro Pimentel, Luciano de Souza Vespoli, Leandro Fernandes Andrade, Mariana Ramos Leandro, Suzane Ariádina de Souza, Aline Chaves Intorne, Caio Cezar Guedes Corrêa, Vanildo Silveira, Gonçalo Apolinário de Souza Filho
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Abstract

Zinc (Zn) is an essential metal for the metabolism of bacteria, but in high concentrations, it may be toxic to cells. Gluconacetobacter diazotrophicus is a Gram-negative bacterium characterized by its ability to promote plant growth. Moreover, G. diazotrophicus can survive under challenging conditions, including metal stress. However, the mechanisms that control its resistance to metals require further investigation. This work investigated the main molecular mechanisms associated with the resistance of G. diazotrophicus PAL5 to Zn. Comparative proteomic analyses aimed to identify molecular pathways, and essential proteins were validated by mutagenesis. The main molecular pathways identified by proteomics included response to oxidative stress, sugar metabolism, nutrient uptake, cell envelope metabolism, protein quality control, and the efflux pump system. Mutagenesis showed that the absence of the genes ggt (response to oxidative stress), pgl (sugar metabolism), accC (cell envelope metabolism), tbdR (nutrient uptake), clpX and degP (protein quality control), and czcC (efflux pump system) increased the sensitivity of G. diazotrophicus mutants to Zn. Our results identified essential molecular mechanisms for Zn resistance in G. diazotrophicus, highlighting the essential role of the pentose phosphate pathway.

戊糖磷酸途径对重氮营养菌PAL5对锌的抗性至关重要。
锌(Zn)是细菌代谢必不可少的金属,但在高浓度时,它可能对细胞有毒。重氮养糖醋杆菌是一种革兰氏阴性菌,具有促进植物生长的能力。此外,重氮营养菌可以在具有挑战性的条件下生存,包括金属应力。然而,控制其抗金属性的机制需要进一步研究。本文研究了重氮营养菌PAL5对Zn抗性的主要分子机制。比较蛋白质组学分析旨在确定分子途径,并通过诱变验证必需蛋白。蛋白质组学鉴定的主要分子通路包括氧化应激应答、糖代谢、营养摄取、包膜代谢、蛋白质质量控制和外排泵系统。诱变结果表明,重氮营养菌突变体缺乏ggt(氧化应激响应)、pgl(糖代谢)、accC(包膜代谢)、tbdR(营养摄取)、clpX和degP(蛋白质质量控制)以及czcC(外排泵系统)等基因,对锌的敏感性增加。我们的研究结果确定了重氮营养菌(G. diazotrophicus)耐锌的基本分子机制,强调了戊糖磷酸途径的重要作用。
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来源期刊
World journal of microbiology & biotechnology
World journal of microbiology & biotechnology 工程技术-生物工程与应用微生物
CiteScore
6.30
自引率
2.40%
发文量
257
审稿时长
2.5 months
期刊介绍: World Journal of Microbiology and Biotechnology publishes research papers and review articles on all aspects of Microbiology and Microbial Biotechnology. Since its foundation, the Journal has provided a forum for research work directed toward finding microbiological and biotechnological solutions to global problems. As many of these problems, including crop productivity, public health and waste management, have major impacts in the developing world, the Journal especially reports on advances for and from developing regions. Some topics are not within the scope of the Journal. Please do not submit your manuscript if it falls into one of the following categories: · Virology · Simple isolation of microbes from local sources · Simple descriptions of an environment or reports on a procedure · Veterinary, agricultural and clinical topics in which the main focus is not on a microorganism · Data reporting on host response to microbes · Optimization of a procedure · Description of the biological effects of not fully identified compounds or undefined extracts of natural origin · Data on not fully purified enzymes or procedures in which they are applied All articles published in the Journal are independently refereed.
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