Gonococcal resistance to zoliflodacin could emerge via transformation from commensal Neisseria species. An in-vitro transformation study

被引:9
作者
Abdellati, Said [1 ]
Laumen, Jolein Gyonne Elise [1 ,2 ]
de Block, Tessa [3 ]
De Baetselier, Irith [3 ]
van den Bossche, Dorien [3 ]
Van Dijck, Christophe [1 ,2 ]
Manoharan-Basil, Sheeba Santhini [1 ]
Kenyon, Chris [1 ,4 ]
机构
[1] Inst Trop Med, Dept Clin Sci, STI Unit, Antwerp, Belgium
[2] Univ Antwerp, Lab Med Microbiol, Antwerp, Belgium
[3] Inst Trop Med, Dept Clin Sci, Clin Reference Lab, Antwerp, Belgium
[4] Univ Cape Town, Div Infect Dis & HIV Med, Cape Town, South Africa
关键词
D O I
10.1038/s41598-023-49943-z
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
One of the most promising new treatments for gonorrhoea currently in phase 3 clinical trials is zoliflodacin. Studies have found very little resistance to zoliflodacin in currently circulating N. gonorrhoeae strains, and in-vitro experiments demonstrated that it is difficult to induce resistance. However, zoliflodacin resistance may emerge in commensal Neisseria spp., which could then be transferred to N. gonorrhoeae via transformation. In this study, we investigated this commensal-resistance-pathway hypothesis for zoliflodacin. To induce zoliflodacin resistance, ten wild-type susceptible isolates belonging to 5 Neisseria species were serially passaged for up to 48 h on gonococcal agar plates containing increasing zoliflodacin concentrations. Within 7 to 10 days, all strains except N. lactamica, exhibited MICs of >= 4 mu g/mL, resulting in MIC increase ranging from 8- to 64-fold. The last passaged strains and their baseline were sequenced. We detected mutations previously reported to cause zoliflodacin resistance in GyrB (D429N and S467N), novel mutations in the quinolone resistance determining region (QRDR) (M464R and T472P) and mutations outside the QRDR at amino acid positions 28 and 29 associated with low level resistance (MIC 2 mu g/mL). Genomic DNA from the laboratory evolved zoliflodacin-resistant strains was transformed into the respective baseline wild-type strain, resulting in MICs of >= 8 mu g/mL in most cases. WGS of transformants with decreased zoliflodacin susceptibility revealed presence of the same zoliflodacin resistance determinants as observed in the donor strains. Two inter-species transformation experiments were conducted to investigate whether zoliflodacin resistance determinants of commensal Neisseria spp. could be acquired by N. gonorrhoeae. N. gonorrhoeae strain WHO P was exposed to (i) pooled genomic DNA from the two resistant N. mucosa strains and (ii) a gyrB amplicon of the resistant N. subflava strain 45/1_8. Transformants of both experiments exhibited an MIC of 2 mu g/mL and whole genome analysis revealed uptake of the mutations detected in the donor strains. This is the first in-vitro study to report that zoliflodacin resistance can be induced in commensal Neisseria spp. and subsequently transformed into N. gonorrhoeae.
引用
收藏
页数:10
相关论文
共 33 条
[1]   Using a public database of Neisseria gonorrhoeae genomes to detect mutations associated with zoliflodacin resistance [J].
Adamson, Paul C. ;
Lin, Eric Y. ;
Ha, Sung-Min ;
Klausner, Jeffrey D. .
JOURNAL OF ANTIMICROBIAL CHEMOTHERAPY, 2021, 76 (11) :2847-2849
[2]   Characterization of the Novel DNA Gyrase Inhibitor AZD0914: Low Resistance Potential and Lack of Cross-Resistance in Neisseria gonorrhoeae [J].
Alm, Richard A. ;
Lahiri, Sushmita D. ;
Kutschke, Amy ;
Otterson, Linda G. ;
McLaughlin, Robert E. ;
Whiteaker, James D. ;
Lewis, Lisa A. ;
Su, Xiaohong ;
Huband, Michael D. ;
Gardner, Humphrey ;
Mueller, John P. .
ANTIMICROBIAL AGENTS AND CHEMOTHERAPY, 2015, 59 (03) :1478-1486
[3]   Trimmomatic: a flexible trimmer for Illumina sequence data [J].
Bolger, Anthony M. ;
Lohse, Marc ;
Usadel, Bjoern .
BIOINFORMATICS, 2014, 30 (15) :2114-2120
[4]   Zoliflodacin: An Oral Spiropyrimidinetrione Antibiotic for the Treatment of Neisseria gonorrheae, Including Multi-Drug-Resistant Isolates [J].
Bradford, Patricia A. ;
Miller, Alita A. ;
O'Donnell, John ;
Mueller, John P. .
ACS INFECTIOUS DISEASES, 2020, 6 (06) :1332-1345
[5]   Defining the oral microbiome by whole-genome sequencing and resistome analysis: the complexity of the healthy picture [J].
Caselli, Elisabetta ;
Fabbri, Chiara ;
D'Accolti, Maria ;
Soffritti, Irene ;
Bassi, Cristian ;
Mazzacane, Sante ;
Franchi, Maurizio .
BMC MICROBIOLOGY, 2020, 20 (01)
[6]  
Chen M., 2019, Antimicrob. Agents Chemother, V64, P10
[7]  
CLSI, 2020, Performance Standards for Antimicrobial Susceptibility Testing, V30th edn
[8]   WGS of Commensal Neisseria Reveals Acquisition of a New Ribosomal Protection Protein (MsrD) as a Possible Explanation for High Level Azithromycin Resistance in Belgium [J].
de Block, Tessa ;
Laumen, Jolein Gyonne Elise ;
Van Dijck, Christophe ;
Abdellati, Said ;
De Baetselier, Irith ;
Manoharan-Basil, Sheeba Santhini ;
Van den Bossche, Dorien ;
Kenyon, Chris .
PATHOGENS, 2021, 10 (03)
[9]   ULTRASONIC DEGRADATION OF DNA [J].
ELSNER, HI ;
LINDBLAD, EB .
DNA-A JOURNAL OF MOLECULAR & CELLULAR BIOLOGY, 1989, 8 (10) :697-701
[10]   In vitro antimicrobial combination testing of and evolution of resistance to the first-in-class spiropyrimidinetrione zoliflodacin combined with six therapeutically relevant antimicrobials for Neisseria gonorrhoeae [J].
Foerster, Sunniva ;
Drusano, George ;
Golparian, Daniel ;
Neely, Michael ;
Piddock, Laura J., V ;
Alirol, Emilie ;
Unemo, Magnus .
JOURNAL OF ANTIMICROBIAL CHEMOTHERAPY, 2019, 74 (12) :3521-3529