Persister Heterogeneity Arising from a Single Metabolic Stress

被引:102
作者
Amato, Stephanie M. [1 ]
Brynildsen, Mark P. [1 ]
机构
[1] Princeton Univ, Dept Chem & Biol Engn, Princeton, NJ 08544 USA
关键词
MEDIATE ANTIBIOTIC TOLERANCE; AMINO-ACID STARVATION; ESCHERICHIA-COLI; BACTERIAL PERSISTENCE; GUANOSINE TETRAPHOSPHATE; MULTIPLE ANTIBIOTICS; RIBOSOMAL-RNA; PEPTIDOGLYCAN BIOSYNTHESIS; TRANS-TRANSLATION; RELA GENE;
D O I
10.1016/j.cub.2015.06.034
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Persisters are phenotypic variants present within isogenic bacterial populations that exhibit extreme tolerance toward antibiotic stress. We previously elucidated a mechanistic pathway by which Escherichia coli persisters to ofloxacin form in response to a carbon source transition. Here, we examine how persisters to ampicillin form from the same metabolic stress and identify the shared and unique elements of the persister formation pathways. We discovered that diauxie-dependent formation of ampicillin persisters required RelA and that loss of clpA, ssrA, or smpB eliminated persister formation through relaxation of the stringent response. Further, we found that tolerance to ampicillin was achieved through broad inhibition of peptidoglycan biosynthesis, as evidenced by the formation of persisters to antibiotics that target enzymes in different areas of that biosynthetic pathway. Interestingly, ppGpp was required for formation of both ampicillin and ofloxacin persisters, and we demonstrated that higher synthesis of the alarmone was needed to increase persisters to ampicillin compared to ofloxacin. Further, we found trans-translation and DksA to be common mediators of both pathways, whereas ClpA was unique for ampicillin persisters and nucleoid-associated proteins were unique for ofloxacin persisters. These results highlight the need to consider an antibiotic's mode of action when analyzing persister formation, demonstrate that individual stresses can produce persister heterogeneity, and emphasize the importance of identifying each respective pathway to identify common mediators that possess the most therapeutic potential to combat persisters.
引用
收藏
页码:2090 / 2098
页数:9
相关论文
共 46 条
[1]   Heterogeneous bacterial persisters and engineering approaches to eliminate them [J].
Allison, Kyle R. ;
Brynildsen, Mark P. ;
Collins, James J. .
CURRENT OPINION IN MICROBIOLOGY, 2011, 14 (05) :593-598
[2]   Nutrient Transitions Are a Source of Persisters in Escherichia coli Biofilms [J].
Amato, Stephanie M. ;
Brynildsen, Mark P. .
PLOS ONE, 2014, 9 (03)
[3]   The role of metabolism in bacterial persistence [J].
Amato, Stephanie M. ;
Fazen, Christopher H. ;
Henry, Theresa C. ;
Mok, Wendy W. K. ;
Orman, Mehmet A. ;
Sandvik, Elizabeth L. ;
Volzing, Katherine G. ;
Brynildsen, Mark P. .
FRONTIERS IN MICROBIOLOGY, 2014, 5
[4]   Metabolic Control of Persister Formation in Escherichia coli [J].
Amato, Stephanie M. ;
Orman, Mehmet A. ;
Brynildsen, Mark P. .
MOLECULAR CELL, 2013, 50 (04) :475-487
[5]   Bacterial persistence as a phenotypic switch [J].
Balaban, NQ ;
Merrin, J ;
Chait, R ;
Kowalik, L ;
Leibler, S .
SCIENCE, 2004, 305 (5690) :1622-1625
[6]  
BARACCHINI E, 1988, J BIOL CHEM, V263, P2597
[7]   Lon protease degrades transfer-messenger RNA-tagged proteins [J].
Choy, Jennifer S. ;
Aung, Latt Latt ;
Karzai, A. Wali .
JOURNAL OF BACTERIOLOGY, 2007, 189 (18) :6564-6571
[8]   AFFINITIES OF PENICILLINS AND CEPHALOSPORINS FOR THE PENICILLIN-BINDING PROTEINS OF ESCHERICHIA-COLI K-12 AND THEIR ANTIBACTERIAL ACTIVITY [J].
CURTIS, NAC ;
ORR, D ;
ROSS, GW ;
BOULTON, MG .
ANTIMICROBIAL AGENTS AND CHEMOTHERAPY, 1979, 16 (05) :533-539
[9]   Active Starvation Responses Mediate Antibiotic Tolerance in Biofilms and Nutrient-Limited Bacteria [J].
Dao Nguyen ;
Joshi-Datar, Amruta ;
Lepine, Francois ;
Bauerle, Elizabeth ;
Olakanmi, Oyebode ;
Beer, Karlyn ;
McKay, Geoffrey ;
Siehnel, Richard ;
Schafhauser, James ;
Wang, Yun ;
Britigan, Bradley E. ;
Singh, Pradeep K. .
SCIENCE, 2011, 334 (6058) :982-986
[10]   BACTERICIDAL EFFECTS OF ANTIBIOTICS ON SLOWLY GROWING AND NONGROWING BACTERIA [J].
ENG, RHK ;
PADBERG, FT ;
SMITH, SM ;
TAN, EN ;
CHERUBIN, CE .
ANTIMICROBIAL AGENTS AND CHEMOTHERAPY, 1991, 35 (09) :1824-1828