数字农科院2.0

Heat And Pressure Resistance In Escherichia Coli Relates To Protein Folding And Aggregation

文献类型: 外文期刊

作者: Li, H; Mercer, RG; Behr, J; Heinzlmeir, S; Mcmullen, LM; Vogel, RF; Ganzle, MG

作者机构:

关键词: Locus Of Heat Resistance; Heat Resistance; Protein Aggregation; Pressure Resistance; Escherichia Coli

期刊名称: FRONTIERS IN MICROBIOLOGY

ISSN: 1664-302X

年卷期: 2020 年 11 卷

页码:

收录情况: JCR(2021版)

摘要: The locus of heat resistance (LHR) confers extreme heat resistance in Escherichia coli. This study explored the role of the LHR in heat and pressure resistance of E. coli, as well as its relationship with protein folding and aggregation in vivo. The role of LHR was investigated in E. coli MG1655 and the pressure resistant E. coli LMM1010 expressing an ibpA-yfp fusion protein to visualize inclusion bodies by fluorescence microscopy. The expression of proteins by the LHR was determined by proteomic analysis; inclusion bodies of untreated and treated cells were also analyzed by proteomics, and by fluorescent microscopy. In total, 11 proteins of LHR were expressed: sHSP20, ClpK(GI), sHSP, YdfX1 and YdfX2, HdeD, KefB, Trx, PsiE, DegP, and a hypothetical protein. The proteomic analysis of inclusion bodies revealed a differential abundance of proteins related to oxidative stress in strains carrying the LHR. The LHR reduced the presence of inclusion bodies after heat or pressure treatment, indicating that proteins expressed by the LHR prevent protein aggregation, or disaggregate proteins. This phenotype of the LHR was also conferred by expression of a fragment containing only sHSP20, ClpK(GI), and sHSP. The LHR and the fragment encoding only sHSP20, ClpK(GI), and sHSP also enhanced pressure resistance in E. coli MG1655 but had no effect on pressure resistance of E. coli LMM1010. In conclusion, the LHR confers pressure resistance to some strains of E. coli, and reduces protein aggregation. Pressure and heat resistance are also dependent on additional LHR-encoded functions.

分类号:

  • 相关文献

[1]Quantitative, Convenient, and Efficient Genome-Wide R-Loop Profiling by ssDRIP-Seq in Multiple Organisms. Xu W., Li K., Li Q., Li S., Zhou J., Sun Q.. 2022

[2]Resistance response to Arenicin derivatives in Escherichia coli. Wang Z., Yang N., Teng D., Hao Y., Li T., Han H., Mao R., Wang J.. 2022

[3]Drug resistance and susceptibility testing of gram negative bacterial isolates from healthy cattle with different β – lactam resistance phenotypes from Shandong province China [Teste de resistência a drogas e suscetibilidade de isolados bacterianos gram negativos de bovinos saudáveis com diferentes fenótipos de resistência a β-lactâmicos da província de Shandong, China]. Arbab S., Ullah H., Wei X., Wang W., Ahmad S.U., Zhang J.. 2023

[4]Kineret Protein Solution Survives Ten Y.ears. Peng, YH, Wang, XH. 2018

[5]Nonenzymatic Browning And Protein Aggregation I.n Royal Jelly During R oom-Temperature Storage. Qao, JT, Wang, XY, Liu, LQ, Zhang, HC. 2018

[6]Design and Optimization of Methanol Reforming Hydrogen Production Systems. Limei Sun, Yang Liu, Bin Yu, Xiujuan Zhu, Limei Gu, Zhiyong Luan, Hongyang Wang, Jialei Liu. 2025

[7]Design and optimization of methanol reforming hydrogen production systems. Limei Sun , Yang Liu1 , Bin Yu , Xiujuan Zhu, Limei Gu, Zhiyong Luan, Hongyang Wang, Jialei Liu*. 2025

[8]Self-Assembling Rotavirus Vp6 Nanoparticle Vaccines E.xpressed In Escherichia Coli E licit Systemic And Mucosal Responses In Mice. Cui, Kuiqing,Shi, Deshun,Huang, Kongwei,Liu, Qingyou,Liu, Fuhang,Li, Zhipeng,Liu, Qingyou. 2019

[9]Prevalence And Characteristics Of Extended S.pectrum Beta-Lactamase-Producing Escherichia Coli F rom Bovine Mastitis Cases In China. Li Hong-sheng,Shang Xiao-fei,Wang Ling,Wang Xu-rong,Yan Zuo-ting,Yang Feng,Yang Feng,Zhang Shi-dong. 2018

[10]An Enhanced Vector-Free Allele Exchange (.Vfae) Mutagenesis Protocol For G enome Editing In A Wide Range Of Bacterial Species. Yan, Yongliang,Shang, Liguo,Yang, Zhimin,Zhang, Chen,Zhan, Yuhua,Gomaa, Ahmed E.,Deng, Zhiping,Jiang, Shijie,Lu, Wei,Lin, Min. 2017

[11]Use Of A Modified Bacterial G.host Lysis System For T he Construction Of An Inactivated Avian Pathogenic Escherichia Coil Vaccine Candidate. Hu, JG, Zuo, JK, Chen, ZG, Fu, LX, Lv, XL, Hu, SJ, Shi, XC, Jing, YW, Wang, YL, Wang, ZH, Mi, RS, Huang, Y, Liu, DH, Qi, KZ, Han, XG. 2019

[12]Conformational Determinants Necessary For Secretion O.f Paecilomyces Thermophila Beta-1,4-Xylosidase T hat Lacks A Signal Peptide. Yang, YL, Li, J, Yu, Q, Hou, JX, Gao, CC, Li, D, Liu, Y, Ran, C, Zhou, ZG. 2018

[13]Characterization Of Oqxab In Escherichia C.oli Isolates From Animals, R etail Meat, And Human Patients In Guangzhou, China. Wang, J, Zhi, CP, Chen, XJ, Guo, ZW, Liu, WL, Luo, J, Huang, XY, Zeng, L, Huang, JW, Xia, YB, Yi, MY, Huang, T, Zeng, ZL, Liu, JH. 2017

[14]Antibacterial Activity And Mechanism Of T.he Ethanol Extracts From S onchus Brachyotus Dc.. Li, XM, Liu, J, Du, YK, Wen, ZG, Wang, JT, Yang, PL. 2017

[15]Combined Systems Approaches Reveal A M.ultistage Mode Of Action O f A Marine Antimicrobial Peptide Against Pathogenic Escherichia Coli And Its Protective Effect Against Bacterial Peritonitis And Endotoxemia. Wang, XM, Teng, D, Mao, RY, Yang, N, Hao, Y, Wang, JH. 2017

[16]Improving Extracellular Production Of Serratia M.arcescens Lytic Polysaccharide Monooxygenase C bp21 And Aeromonas Veronii B565 Chitinase Chi92 In Escherichia Coli And Their Synergism. Yang, YL, Li, J, Liu, XW, Pan, XL, Hou, JX, Ran, C, Zhou, ZG. 2017

[17]In vitro Study of Urtica cannabina and Leymus chinensis on Rumen Microbial Fermentation and Gas Production. Zhang Z., Wang S., Qi R., Shahzad K., Shi L., Zhang X., Wang M.. 2022

[18]Dietarybacillusspp.Enhanced Growth And Disease Resistance Of Weaned Pigs By Modulating Intestinal Microbiota And Systemic Immunity. He, YJ, Jinno, C, Kim, K, Wu, ZH, Tan, B, Li, XD, Whelan, R, Liu, YH. 2020

[19]C. Elegans as an in vivo model system for the phenotypic drug discovery for treating paraquat poisoning. Ji P., Li H., Jin Y., Peng Y., Zhao L., Wang X.. 2022

[20]Enhanced production of iturin A by strengthening fatty acid synthesis modules in Bacillus amyloliquefaciens. Gao L., She M., Shi J., Cai D., Wang D., Xiong M., Shen G., Gao J., Zhang M., Yang Z., Chen S.. 2022

作者其他论文 更多>>