DIVERSE STRESS TREATMENTS AND ACINETOBACTER BAUMANNII PERSISTER FORMATION

Authors

  • Wedean. G. A.
  • S.S. Mahmood
  • Z.F. Mahmood

DOI:

https://doi.org/10.36103/ijas.v53i6.1665

Keywords:

Imipenem, TA system, hicAB, relEB, curcumin.

Abstract

This study was aimed to investigate diverse stress treatments on Imipenem susceptible A. baumannii for persister cells formation. Isolates were assessed for persister cells presence by colony forming unit counting (CFU/ml) after exposure to Imipenem (10 µg/ml) in presence and absence of acid stress treatment (pH 6) for 0-7 hr. In- vitro activity of curcumin to synergize Imipenem to kill persister cells was investigated. The frequency of hicAB and relEB of type II toxin- antitoxin (TA) loci was evaluated by polymerase chain reaction. The transcription level of hicA and relE toxin genes was assessed by quantitative reverse transcriptase polymerase chain reaction. The level of persistence varied between isolates and across the stress conditions. Imipenem treated isolates gave persister fraction of 0.07% to 0.4% whereas Imipenem + pH6 treated isolates gave 0.3% to 0.7% of the initial untreated population. No significant reduction in persistence level was observed after combination with curcumin (P value > 0.05). The hicAB and relEB loci were detected in 100% and 61.5% of Imipenem susceptible isolates, respectively. Imipenem triggered hicA toxin gene transcription while acid stress triggered hicA and relE toxin genes transcription in persister cells.

References

Alexander, H., E. Maisonneuve and G. Kenn, 2016. Mechanisms of bacterial persistence during stress and antibiotic exposure. Science Journal. 354, 6318

Ali, A.A. and S.S., Mahmood. 2022. Role of RND- efflux pump in levofloxacin resistance among Acinetobacter baumannii. Iraqi Journal of Agriculture Science. 53, 3, 542-550

Amanjot, K., P. Sharma and C. Neena. 2018. Curcumin alleviates persistence of Acinetobacter baumannii against colistin. Scientific Reports Journal. 8:11029

Amita, G., B. Venkataraman, M. Vasudevan and G. B. Kiran. 2017. Co-expression network analysis of toxin-antitoxin loci in Mycobacterium tuberculosis reveals key modulators of cellular stress. Scientific Reports Journal. 7: 5868

Angela, M. C., B. Gollan, Przydacz, M., Wong, C.T, Mlona, A., Hare, S. A., and Sophie, H. 2016. A Salmonella Toxin Promotes Persister Formation through Acetylation of tRNA. Molecular Cell Journal. 63,1:86-96

Carmen, M. G., J. Mateos, J. Mendez, P. Fernandez-Puente, C. Rumbo, M. Tomas, ́ Ó. S. M. de Ilarduya and B. German. 2013. Molecular Mechanisms Involved in the Response to Desiccation Stress and Persistence in Acinetobacter baumannii. Journal of Proteome Research. 13, 2:460–476

Daphne, A. C. S, P. W.S. Hill, A. J. Wedtermann, R. A. Fisher, T. L. Thurston, A. E. Saliba, I. Blommestein, J. Vogel and H. Sophie. 2018. Salmonella persisters undermine host immune defenses during antibiotic treatment. Science Journal 362, 6419:1156-1160

Darina, D., G. L. Murray, I.Paulsen and Y. P. Anton. 2015. Community-acquired Acinetobacter baumannii: clinical characteristics, epidemiology and pathogenesis. Expert Review of Anti-infective Therapy Journal. 13, 5:567-73

Dijun, D., X. Wang-Kan, A. Neuberger, H. W. Van Veen, K. M. Pos, L. j.v. Piddock and F.L. Ben. 2018. Multidrug efflux pumps: structure, function and regulation. Nature Reviews Microbiology Journal. 16: 523–539

Etienne, M., L. J. shakespearea, M. G. Jorgensenb and G. Kenn. 2011. Bacterial persistence by RNA endonucleases. Proceedings of the National Academy of Sciences of the United States of America Journal. 108, 32: 13206- 13211

Eun, S.C., Y. Mi Wi and S.K. Kwan. 2017. Variation in formation of persister cells against colistin in Acinetobacter baumannii isolates and its relationship with treatment failure. Antimicrobial Chemotherapy Journal. 72: 2133–2135

Federico, P., A. M. Hujer, K. M. Hujer, B. K. Decker, P.N. Rather and A. B. Robert. 2016. Global Challenge of Multidrug-Resistant Acinetobacter baumannii. Journal of Antimicrob Agents Chemother 51, 10: 3471–3484

Francesca, B., R. Provvedi, L. C. Mazzabo, G. Segafreddo and M. Riccardo. 2020. Tolerance and persistence to drugs: A main challenge in the fight against Mycobacterium tuberculosis. Frontiers in Microbiology Journal. 26,11:1924

Garim, S., M. Yadav, C. Ghosh and S. R. Jitendra. 2021. Bacterial toxin-antitoxin modules: classification, functions, and association with persistence. Current Research in Microbial Sciences Journal. 2:100047.

Harris, S. M. and K. P. Bertrand. 1983. HipA, a newly recognized gene of Escherichia coli K-12 that affects frequency of persistence after inhibition of murein synthesis. American Society of Microbiology Journal. 155:768-775

Holly, R. R., L. E. Connolly and S. C.Jeffery. 2009. Comprehensive functional analysis of Mycobacterium tuberculosis toxin-antitoxin systems: implications for pathogenesis, stress responses, and evolution. PLoS Genetics Journal. 5:12

Ismail, N. H., A. Kucubayrak, T. Tas, A. B. Yikilgan, A. Akkayya, A. Yasayacak and A. Hayrettin. 2013. Nosocomial Acinetobacter baumannii infections and changing Antibiotic Resistance. Pakistan Journal of medical science. 29(5):1245-1248

Junqiao, Z., Q. Wang, M. Li, B. D. Heijstra, S. Wang, Q. Liang and Q. Qingsheng. 2013. Escherichia coli toxin gene hipA affects biofilm formation and DNA release. Microbiology Journal. 159: 633-640

Mariam, R.H. and L. A., Yaaqoob. 2020. Evaluation the effect of green synthesis titanium dioxide nanoparticles on Acinetobacter baumannii isolates. Iraqi Journal of Agriculture Science. 51,6, 1486-1495

Milda, J., A. Markuckas and S. Edita. 2016. Identification and characterization of type II toxin-antitoxin systems in the opportunistic pathogen Acinetobacter baumannii. Journal of Bacteriolgy. 195, 14: 3165–3172

Nathalie, Q. B., S. Helaine. K. Lewis, M. Ackermann, B. Aldridge, D. Andersson, M. P. Brynildsen, D. Bumann, A. Camilli, J. J. Collins, C. Dehio, S. Fourtune, J. Ghigo, W. Hadt, A. Harms, M. Heinemann, D. T. Hung, U. Jenal, B. R. Levin, J. Michiels, G. Storz, M. Tan, T. Tenson, L.V. Melderen and Z. Annelies. 2019. Definitions and guidelines for research on antibiotic persistence. Nature Reviews Microbiology Journal.17: 441–448

Nathan, P. C. and A. D. Dayle. 2016. Wake me when it’s over – Bacterial toxin–antitoxin proteins and induced dormancy. Experimental biology and medicine Journal. 1-11

Orti, G., B. C, J. Strahilevita and Q.B. Nathalie. 2017. TDtest: easy detection of bacterial tolerance and persistence in clinical isolates by a modified disk-diffusion assay. Scientific Reports Journal. 7: 41284

Pacios, O., L. Blasco, I. Bleriot, L.F. Garcia, A. Ambro., M. Lopiz, G. Bou, F. Canton, R. G. Contreras, T.K.Wood and T. Maria. 2020. (p)ppGpp and Its Role in Bacterial Persistence: New Challenges. Antimicrobial agents and chemotherapy. American Society for microbiology Journal. 64,10.

Peng, C., T. Xu, W. Zhang and Z. Ying. 2016. Molecular mechanisms of bacterial persistence and phenotypic antibiotic resistance. Yi chuan = Hereditas Journal. 38,10:859-871

Qiu, E. Y and R. W. Timothy. 2017. Toxin–antitoxin systems and their role in disseminating and maintaining antimicrobial resistance. FEMS Microbiology Review Journal. 41: 343-353

Rene, S. and H. S. Moyed. 1988. Conditional impairment of cell division and altered lethality in hipA mutants of Escherichia coli K-12. Journal of Bacteriology. 170,8: 3321-3326

Rusul, H.S. and S.S., Mahmood. 2022.First report in Iraq: Amino acid substitution in PMRCAB genes and there correlation with colistin resistance among A. baumanni isolates. Iraqi journal of agriculture science. 53,2:237-251

Shruti, Y., P. Sharma and C. Neena. 2021.Potential genes associated with survival of Acinetobacter baumannii under ciprofloxacin stress. Microbes and infection Journal. 23, 9–10.

Sivan, P., C. Gabay, R. Kishony, A. Oppenheim and Q. B. Nathalie. 2008. Non genetic Individuality in the Host–Phage Interaction. PLOS Biology Journal.6,5

Sophie, H., A. M. Cheverton, K. G. Watson, L. M. Faure, S. A. Matthews and W. David. H. 2014. Internalization of Salmonella by macrophages Induces Formation of Non replicating Persisters. Science Journal. 343,6167: 204–208

Tiebin, W., I. El Meouche and J. D. Mary. 2017. Bacterial persistence induced by salicylate via reactive oxygen species. Scientific Reports Journal. 7, 43839

Yanxia, W., M. Vulic´, I. Keren and L. Kim. 2012. Role of oxidative stress in persister tolerance. antimicrobial agents and chemotherapy Journal. 56.9: 4922– 4926

Yingyin, P., Y. Key and B. Fan. 2017. Active efflux in dormant bacterial cells – New insights into antibiotic persistence. Drug resistance update Journal. 30: 7-14

Yong, J., J. Pogliano, D. R. Helinski and K. Lgor. 2002. ParE toxin encoded by the broad-host-range plasmid RK2 is an inhibitor of Escherichia coli gyrase. Molecular Microbiology Journal.44,4: 971–979

Yonglong, Z., J. Zhang, K. P. Hoeflich, M. Lkura, G. Qing and I. Masayori. 2003. MazF cleaves cellular mRNAs specifically at ACA to block protein synthesis in Escherichia coli. Molecular Cell Journal. 12: 913-923.

Downloads

Published

2022-12-29

Issue

Section

Articles

How to Cite

Wedean. G. A., S.S. Mahmood, & Z.F. Mahmood. (2022). DIVERSE STRESS TREATMENTS AND ACINETOBACTER BAUMANNII PERSISTER FORMATION . IRAQI JOURNAL OF AGRICULTURAL SCIENCES, 53(6), 1486-1494. https://doi.org/10.36103/ijas.v53i6.1665

Publication Dates

Similar Articles

11-20 of 628

You may also start an advanced similarity search for this article.