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细胞包膜完整性蛋白同源物D0Y85_RS06240赋予多重抗生素抗性。

The Cell Envelope Integrity Protein Homologue D0Y85_RS06240 of Confers Multiantibiotic Resistance.

作者信息

Zhong Chuanqing, Deng Xiaoqiang, Jiang Aihua, Liu Yayu, Liu Yuanyuan, Fu Jiafang, Cao Guangxiang

机构信息

School of Municipal and Environmental Engineering, Shandong Jianzhu University, Ji'nan 250101, China.

Jinan Urban and Rural Water Bureau, Ji'nan 250099, China.

出版信息

Can J Infect Dis Med Microbiol. 2024 Jan 20;2024:7547514. doi: 10.1155/2024/7547514. eCollection 2024.

Abstract

BACKGROUND

The potential role of cell envelope integrity proteins in mediating antibiotic resistance is not well understood. In this study, we investigated whether the cell envelope integrity protein D0Y85_RS06240 from the multiantibiotic resistant strain sp. G4 mediates antibiotic resistance.

METHODS

Bioinformatics analysis was conducted to identify proteins related to the D0Y85_RS06240 protein. The D0Y85_RS06240 gene was heterologously expressed in , both antibiotic MICs and the effect of efflux pump inhibitors on antibiotic MICs were determined by the broth microdilution method. A combination of antibiotic and efflux pump inhibitor was used to investigate bacterial killing kinetics, and binding of D0Y85_RS06240 to antibiotic molecules was predicted by molecular docking analysis.

RESULTS

Sequence homology analysis revealed that D0Y85_RS06240 was related to cell envelope integrity proteins. The D0Y85_RS06240 heterologous expression strains were resistant to multiple antibiotics, including colistin, tetracycline, and cefixime. However, the efflux pump inhibitor N-methylpyrrolidone (NMP) reduced the antibiotic MICs of the D0Y85_RS06240 heterologous expression strain, and bacterial killing kinetics revealed that NMP enhanced the bactericidal rate of tetracycline to the drug-resistant bacteria. Molecular docking analysis indicated that D0Y85_RS06240 could bind colistin, tetracycline, and cefixime.

CONCLUSION

The cell envelope integrity protein D0Y85_RS06240 in sp. G4 mediates multiantibiotic resistance. This study lays the foundation for an in-depth analysis of D0Y85_RS06240-mediated antibiotic resistance mechanisms and the use of D0Y85_RS06240 as a target for the treatment of multiantibiotic-resistant bacterial infections.

摘要

背景

细胞膜完整性蛋白在介导抗生素耐药性方面的潜在作用尚未得到充分了解。在本研究中,我们调查了多药耐药菌株sp. G4中的细胞膜完整性蛋白D0Y85_RS06240是否介导抗生素耐药性。

方法

进行生物信息学分析以鉴定与D0Y85_RS06240蛋白相关的蛋白质。D0Y85_RS06240基因在中进行异源表达,通过肉汤微量稀释法测定抗生素最低抑菌浓度(MIC)以及外排泵抑制剂对抗生素MIC的影响。使用抗生素和外排泵抑制剂的组合来研究细菌杀灭动力学,并通过分子对接分析预测D0Y85_RS06240与抗生素分子的结合。

结果

序列同源性分析表明D0Y85_RS06240与细胞膜完整性蛋白相关。D0Y85_RS06240异源表达菌株对多种抗生素耐药,包括黏菌素、四环素和头孢克肟。然而,外排泵抑制剂N - 甲基吡咯烷酮(NMP)降低了D0Y85_RS06240异源表达菌株的抗生素MIC,细菌杀灭动力学表明NMP提高了四环素对耐药菌的杀菌率。分子对接分析表明D0Y85_RS06240可以结合黏菌素、四环素和头孢克肟。

结论

sp. G4中的细胞膜完整性蛋白D0Y85_RS06240介导多药耐药性。本研究为深入分析D0Y85_RS06240介导的抗生素耐药机制以及将D0Y85_RS06240用作治疗多药耐药细菌感染的靶点奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a49a/10821804/0cc2fc735118/CJIDMM2024-7547514.001.jpg

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