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H-NOX 影响. 中的生物膜形成、中心代谢和群体感应。

H-NOX Influences Biofilm Formation, Central Metabolism, and Quorum Sensing in .

机构信息

Department of Chemistry and Biochemistry, New Mexico State University, Las Cruces, New Mexico 88003, United States.

Department of Mathematics and Physics, North South University, Bashundhara RA, Dhaka 1229, Bangladesh.

出版信息

J Proteome Res. 2024 Nov 1;23(11):4988-5000. doi: 10.1021/acs.jproteome.4c00466. Epub 2024 Oct 6.

Abstract

The transition from planktonic to biofilm growth in bacteria is often accompanied by greater resistance to antibiotics and other stressors, as well as distinct alterations in physical traits, genetic activity, and metabolic restructuring. In many species, the heme nitric oxide/oxygen binding proteins (H-NOX) play an important role in this process, although the signaling mechanisms and pathways in which they participate are quite diverse and largely unknown. In , deletion of the gene results in a severe biofilm-deficient phenotype. Quantitative proteomics was used to assemble a comprehensive data set of proteins showing altered abundance of those involved in several important metabolic pathways. Further, decreased levels of pyruvate and elevated levels of C homoserine lactone were detected for the strain, associating the biofilm deficiency with altered central carbon metabolism and quorum sensing, respectively. These results expand our knowledge of the important role of H-NOX signaling in biofilm formation.

摘要

在细菌从浮游生长向生物膜生长的转变过程中,往往伴随着对抗生素和其他应激源的抗性增强,以及物理特性、基因活性和代谢重构的明显改变。在许多物种中,血红素一氧化氮/氧结合蛋白(H-NOX)在这个过程中起着重要的作用,尽管它们参与的信号机制和途径非常多样化,而且在很大程度上还不为人知。在 中,基因的缺失导致严重的生物膜缺陷表型。定量蛋白质组学被用来组装一个涉及几个重要代谢途径的蛋白质丰度变化的综合数据集。此外,还检测到 菌株中丙酮酸水平降低和 C 同型半胱氨酸内酯水平升高,分别将生物膜缺陷与中心碳代谢和群体感应的改变联系起来。这些结果扩展了我们对 H-NOX 信号在生物膜形成中的重要作用的认识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7db4/11536421/ae3497025ef0/pr4c00466_0001.jpg

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