The Capsule Regulatory Network of Klebsiella pneumoniae Defined by density-TraDISort

被引:89
作者
Dorman, Matthew J. [1 ]
Feltwell, Theresa [1 ]
Goulding, David A. [1 ]
Parkhill, Julian [1 ]
Short, Francesca L. [1 ,2 ]
机构
[1] Wellcome Sanger Inst, Hinxton, Cambs, England
[2] Univ Cambridge, Dept Med, Cambridge, England
关键词
Klebsiella; TraDIS; capsular polysaccharide; capsule regulation; pathogenesis; ENTEROBACTERIAL COMMON ANTIGEN; PRIMARY LIVER-ABSCESS; ESCHERICHIA-COLI; SEROTYPE K1; POLYSACCHARIDE SYNTHESIS; VIRULENCE DETERMINANT; POLYMYXIN RESISTANCE; GENE; IDENTIFICATION; EXPRESSION;
D O I
10.1128/mBio.01863-18
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Klebsiella pneumoniae infections affect infants and the immunocompromised, and the recent emergence of hypervirulent and multidrug-resistant K. pneumoniae lineages is a critical health care concern. Hypervirulence in K. pneumoniae is mediated by several factors, including the overproduction of extracellular capsule. However, the full details of how K. pneumoniae capsule biosynthesis is achieved or regulated are not known. We have developed a robust and sensitive procedure to identify genes influencing capsule production, density-TraDISort, which combines density gradient centrifugation with transposon insertion sequencing. We have used this method to explore capsule regulation in two clinically relevant Klebsiella strains, K. pneumoniae NTUH-K2044 (capsule type K1) and K. pneumoniae ATCC 43816 (capsule type K2). We identified multiple genes required for full capsule production in K. pneumoniae, as well as putative suppressors of capsule in NTUH-K2044, and have validated the results of our screen with targeted knockout mutants. Further investigation of several of the K. pneumoniae capsule regulators identified-ArgR, MprA/KvrB, SlyA/KvrA, and the Sap ABC transporter-revealed effects on capsule amount and architecture, serum resistance, and virulence. We show that capsule production in K. pneumoniae is at the center of a complex regulatory network involving multiple global regulators and environmental cues and that the majority of capsule regulatory genes are located in the core genome. Overall, our findings expand our understanding of how capsule is regulated in this medically important pathogen and provide a technology that can be easily implemented to study capsule regulation in other bacterial species. IMPORTANCE Capsule production is essential for K. pneumoniae to cause infections, but its regulation and mechanism of synthesis are not fully understood in this organism. We have developed and applied a new method for genome-wide identification of capsule regulators. Using this method, many genes that positively or negatively affect capsule production in K. pneumoniae were identified, and we use these data to propose an integrated model for capsule regulation in this species. Several of the genes and biological processes identified have not previously been linked to capsule synthesis. We also show that the methods presented here can be applied to other species of capsulated bacteria, providing the opportunity to explore and compare capsule regulatory networks in other bacterial strains and species.
引用
收藏
页数:19
相关论文
共 76 条
[1]   H-NS Nucleoid Protein Controls Virulence Features of Klebsiella pneumoniae by Regulating the Expression of Type 3 Pili and the Capsule Polysaccharide [J].
Ares, Miguel A. ;
Fernandez-Vazquez, Jose L. ;
Rosales-Reyes, Roberto ;
Dolores Jarillo-Quijada, Ma. ;
von Bargen, Kristine ;
Torres, Javier ;
Gonzalez-y-Merchand, Jorge A. ;
Alcantar-Curiel, Maria D. ;
De la Cruz, Miguel A. .
FRONTIERS IN CELLULAR AND INFECTION MICROBIOLOGY, 2016, 6
[2]   Genome-Wide Identification of Klebsiella pneumoniae Fitness Genes during Lung Infection [J].
Bachman, Michael A. ;
Breen, Paul ;
Deornellas, Valerie ;
Mu, Qiao ;
Zhao, Lili ;
Wu, Weisheng ;
Cavalcoli, James D. ;
Mobley, Harry L. T. .
MBIO, 2015, 6 (03)
[3]   The TraDIS toolkit: sequencing and analysis for dense transposon mutant libraries [J].
Barquist, Lars ;
Mayho, Matthew ;
Cummins, Carla ;
Cain, Amy K. ;
Boinett, Christine J. ;
Page, Andrew J. ;
Langridge, Gemma C. ;
Quail, Michael A. ;
Keane, Jacqueline A. ;
Parkhill, Julian .
BIOINFORMATICS, 2016, 32 (07) :1109-1111
[4]   A formyltransferase required for polymyxin resistance in Escherichia coli and the modification of lipid a with 4-amino-4-deoxy-L-arabinose -: Identification and function of UDP-4-deoxy-4-formamido-L-arabinose [J].
Breazeale, SD ;
Ribeiro, AA ;
McClerren, AL ;
Raetz, RH .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2005, 280 (14) :14154-14167
[5]  
Broberg Christopher A, 2014, F1000Prime Rep, V6, P64, DOI 10.12703/P6-64
[6]   The capsule of Porphyromonas gingivalis reduces the immune response of human gingival fibroblasts [J].
Brunner, Jorg ;
Scheres, Nina ;
El Idrissi, Nawal B. ;
Deng, Dong M. ;
Laine, Marja L. ;
van Winkelhoff, Arie J. ;
Crielaard, Wim .
BMC MICROBIOLOGY, 2010, 10
[7]   The Rcs Signal Transduction Pathway Is Triggered by Enterobacterial Common Antigen Structure Alterations in Serratia marcescens [J].
Castelli, Maria E. ;
Garcia Vescovi, Eleonora .
JOURNAL OF BACTERIOLOGY, 2011, 193 (01) :63-74
[8]   Sequencing and analysis of the large virulence plasmid pLVPK of Klebsiella pneumoniae CG43 [J].
Chen, YT ;
Chang, HY ;
Lai, YC ;
Pan, CC ;
Tsai, SF ;
Peng, HL .
GENE, 2004, 337 :189-198
[9]  
CHENG DL, 1991, ARCH INTERN MED, V151, P1557
[10]   RmpA Regulation of Capsular Polysaccharide Biosynthesis in Klebsiella pneumoniae CG43 [J].
Cheng, H. Y. ;
Chen, Y. S. ;
Wu, C. Y. ;
Chang, H. Y. ;
Lai, Y. C. ;
Peng, H. L. .
JOURNAL OF BACTERIOLOGY, 2010, 192 (12) :3144-3158