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Campylobacter jejuni permeabilizes the host cell membrane by short chain lysophosphatidylethanolamines

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Article: 2091371 | Received 31 Jan 2022, Accepted 10 Jun 2022, Published online: 07 Jul 2022

References

  • Li YF, Li RS, Samuel SB, Cueto R, Li XY, Wang H, Yang XF. Lysophospholipids and their G protein-coupled receptors in atherosclerosis. Front Biosci. 2016 Landmark Ed;21(1):70–10. doi:10.2741/4377.
  • Zou D, Pei J, Lan J, Sang H, Chen H, Yuan H, Wu D, Zhang Y, Wang Y, Wang D, et al. A SNP of bacterial blc disturbs gut lysophospholipid homeostasis and induces inflammation through epithelial barrier disruption. EBioMedicine. 2020;52:102652. doi:10.1016/j.ebiom.2020.102652.
  • Zheng L, Lin Y, Lu S, Zhang J, Bogdanov M. Biogenesis, transport and remodeling of lysophospholipids in Gram-negative bacteria. Biochim Biophys Acta Mol Cell Biol Lipids. 2017;1862(11):1404–1413. doi:10.1016/j.bbalip.2016.11.015.
  • Schmiel DH, Miller VL. Bacterial phospholipases and pathogenesis. Microbes Infect. 1999;1(13):1103–1112. doi:10.1016/S1286-4579(99)00205-1.
  • Zarringhalam K, Zhang L, Kiebish MA, Yang K, Han X, Gross RW, Chuang J. Statistical analysis of the processes controlling choline and ethanolamine glycerophospholipid molecular species composition. PLoS One. 2012;7(5):e37293. doi:10.1371/journal.pone.0037293.
  • Meylaers K, Clynen E, Daloze D, DeLoof A, Schoofs L. Identification of 1-lysophosphatidylethanolamine (C16:1) as an antimicrobial compound in the housefly, Musca domestica. Insect Biochem Mol Biol. 2004;34(1):43–49. doi:10.1016/j.ibmb.2003.09.001.
  • Gotoh M, Fujiwara Y, Yue J, Liu J, Lee S, Fells J, Uchiyama A, Murakami-Murofushi K, Kennel S, Wall J, et al. Controlling cancer through the autotaxin-lysophosphatidic acid receptor axis. Biochem Soc Trans. 2012;40(1):31–36. doi:10.1042/BST20110608.
  • Subramanian N, Qadri A. Lysophospholipid sensing triggers secretion of flagellin from pathogenic Salmonella. Nat Immunol. 2006;7(6):583–589. doi:10.1038/ni1336.
  • Giles DK, Hankins JV, Guan Z, Trent MS. Remodelling of the Vibrio cholerae membrane by incorporation of exogenous fatty acids from host and aquatic environments. Mol Microbiol. 2011;79(3):716–728. doi:10.1111/j.1365-2958.2010.07476.x.
  • Bill M, Brinkmann S, Oberpaul M, Patras MA, Leis B, Marner M, Maitre M, Hammann PE, Vilcinskas A, Schuler SMM, et al. Novel glycerophospholipid, lipo- and N-acyl amino acids from Bacteroidetes: isolation, structure elucidation and bioactivity. Molecules. 2021;26(17):5195. doi:10.3390/molecules26175195.
  • Kim H, Kim M, Myoung K, Kim W, Ko J, Kim KP, Cho E. Comparative lipidomic analysis of extracellular vesicles derived from Lactobacillus plantarum APsulloc 331261 living in green tea leaves using liquid chromatography-mass spectrometry. Int J Mol Sci. 2020;21:8076.
  • Cao X, Brouwers J, van Dijk L, van de Lest C, Parker C, Huynh S, van Putten J, Kelly DJ, Wosten MM. The unique phospholipidome of the enteric pathogen Campylobacter jejuni: lysophosholipids are required for motility at low oxygen availability. J Mol Biol. 2020;432(19):5244–5258. doi:10.1016/j.jmb.2020.07.012.
  • Burnham PM, Hendrixson DR. Campylobacter jejuni: collective components promoting a successful enteric lifestyle. Nat Rev Microbiol. 2018;16(9):551–565. doi:10.1038/s41579-018-0037-9.
  • Lobo de Sa FD, Schulzke JD, Bucker R. Diarrheal mechanisms and the role of intestinal barrier dysfunction in Campylobacter infections. Curr Top Microbiol Immunol. 2021;431:203–231. doi:10.1007/978-3-030-65481-8_8.
  • Bouwman LI, de Zoete MR, Bleumink-Pluym NM, Flavell RA, van Putten JP, de Zoete MR. Inflammasome activation by campylobacter jejuni. J Immunol. 2014;193(9):4548–4557. doi:10.4049/jimmunol.1400648.
  • Elmi A, Nasher F, Dorrell N, Wren B, Gundogdu O. Revisiting Campylobacter jejuni virulence and fitness factors: role in sensing, adapting, and competing. Front Cell Infect Microbiol. 2021;10:607704. doi:10.3389/fcimb.2020.607704.
  • Istivan TS, Coloe PJ, Fry BN, Ward P, Smith SC. Characterization of a haemolytic phospholipase A2 activity in clinical isolates of Campylobacter concisus. J Med Microbiol. 2004;53(6):483–493. doi:10.1099/jmm.0.45554-0.
  • Kim EA, Kim JA, Park MH, Jung SC, Suh SH, Pang MG, Kim YJ. Lysophosphatidylcholine induces endothelial cell injury by nitric oxide production through oxidative stress. J Matern Fetal Neonatal Med. 2009;22(4):325–331. doi:10.1080/14767050802556075.
  • Tang X, Wang W, Hong G, Duan C, Zhu S, Tian Y, Han C, Qian W, Lin R, Hou X. Gut microbiota-mediated lysophosphatidylcholine generation promotes colitis in intestinal epithelium-specific Fut2 deficiency. J Biomed Sci. 2021;28:20–z.
  • Weiler AJ, Spitz O, Gudzuhn M, Schott-Verdugo SN, Kamel M, Thiele B, Streit WR, Kedrov A, Schmitt L, Gohlke H, et al. A phospholipase B from Pseudomonas aeruginosa with activity towards endogenous phospholipids affects biofilm assembly. Biochim Biophys Acta Mol Cell Biol Lipids. 2022;1867(4):159101. doi:10.1016/j.bbalip.2021.159101.
  • Brok RG, Boots AP, Dekker N, Verheij HM, Tommassen J. Sequence comparison of outer membrane phospholipases A: implications for structure and for the catalytic mechanism. Res Microbiol. 1998;149(10):703–710. doi:10.1016/S0923-2508(99)80017-5.
  • Fuller N, Rand RP. The influence of lysolipids on the spontaneous curvature and bending elasticity of phospholipid membranes. Biophys J. 2001;81(1):243–254. doi:10.1016/S0006-3495(01)75695-0.
  • Pickett CL, Auffenberg T, Pesci EC, Sheen VL, Jusuf SS. Iron acquisition and hemolysin production by Campylobacter jejuni. Infect Immun. 1992;60(9):3872–3877. doi:10.1128/iai.60.9.3872-3877.1992.
  • Bleumink-Pluym NM, van Alphen LB, Bouwman LI, Wosten MM, van Putten JP. Identification of a functional type VI secretion system in Campylobacter jejuni conferring capsule polysaccharide sensitive cytotoxicity. PLoS Pathog. 2013;9:e1003393. doi:10.1371/journal.ppat.1003393.
  • Wassenaar TM. Toxin production by Campylobacter spp. Clin Microbiol Rev. 1997;10(3):466–476. doi:10.1128/CMR.10.3.466.
  • Golan DE, Brown CS, Cianci CM, Furlong ST, Caulfield JP. Schistosomula of Schistosoma mansoni use lysophosphatidylcholine to lyse adherent human red blood cells and immobilize red cell membrane components. J Cell Biol. 1986;103(3):819–828. doi:10.1083/jcb.103.3.819.
  • Weltzien HU. Cytolytic and membrane-perturbing properties of lysophosphatidylcholine. Biochim Biophys Acta. 1979;559(2–3):259–287. doi:10.1016/0304-4157(79)90004-2.
  • Morrison DJ, Preston T. Formation of short chain fatty acids by the gut microbiota and their impact on human metabolism. Gut Microbes. 2016;7(3):189–200. doi:10.1080/19490976.2015.1134082.
  • Callahan S, Doster RS, Jackson JW, Kelley BR, Gaddy JA, Johnson JG. Induction of neutrophil extracellular traps by Campylobacter jejuni. Cell Microbiol. 2020;22(8):e13210. doi:10.1111/cmi.13210.
  • Grant KA, Belandia IU, Dekker N, Richardson PT, Park SF. Molecular characterization of pldA, the structural gene for a phospholipase A from Campylobacter coli, and its contribution to cell-associated hemolysis. Infect Immun. 1997;65(4):1172–1180. doi:10.1128/iai.65.4.1172-1180.1997.
  • Arouri A, Mouritsen OG. Membrane-perturbing effect of fatty acids and lysolipids. Prog Lipid Res. 2013;52(1):130–140. doi:10.1016/j.plipres.2012.09.002.
  • Colles SM, Chisolm GM. Lysophosphatidylcholine-induced cellular injury in cultured fibroblasts involves oxidative events. J Lipid Res. 2000;41(8):1188–1198. doi:10.1016/S0022-2275(20)33425-8.
  • Palmer SR, Gully PR, White JM, Pearson AD, Suckling WG, Jones DM, Rawes JC, Penner JL. Water-borne outbreak of campylobacter gastroenteritis. Lancet. 1983;1(8319):287–290. doi:10.1016/S0140-6736(83)91698-7.
  • Rodriguez MS, Thompson J, Hay RT, Dargemont C. Nuclear retention of IκBα protects it from signal-induced degradation and inhibits nuclear factor κB transcriptional activation. J Biol Chem. 1999;274(13):9108–9115. doi:10.1074/jbc.274.13.9108.
  • Hobb RI, Fields JA, Burns CM, Thompson SA. Evaluation of procedures for outer membrane isolation from Campylobacter jejuni. Microbiology (Reading). 2009;155(3):979–988. doi:10.1099/mic.0.024539-0.
  • Groh CD, MacPherson DW, Groves DJ. Effect of heat on the sterilization of artificially contaminated water. J Travel Med. 1996;3(1):11–13. doi:10.1111/j.1708-8305.1996.tb00689.x.
  • Li X, Wubbolts RW, Bleumink-Pluym NMC, van Putten JPM, Strijbis K. The transmembrane mucin MUC1 facilitates beta1-integrin-mediated bacterial invasion. mBio. 2021;12(2). doi:10.1128/mBio.03491-20.