Growth of Streptococcus pneumoniae on human glycoconjugates is dependent upon the sequential activity of bacterial exoglycosidases

被引:120
作者
Burnaugh, Amanda M. [1 ,2 ]
Frantz, Laura J. [1 ,2 ]
King, Samantha J. [1 ,2 ]
机构
[1] Ohio State Univ, Res Inst, Ctr Microbial Pathogenesis, Nationwide Childrens Hosp,Coll Med, Columbus, OH 43205 USA
[2] Ohio State Univ, Coll Med, Dept Pediat, Columbus, OH 43205 USA
关键词
D O I
10.1128/JB.01251-07
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
In the human host, Streptococcus pneumoniae encounters a variety of glycoconjugates, including mucin, host defense molecules, and glycans associated with the epithelial surface. S. pneumoniae is known to encode a number of glycosidases that may modify these glycoconjugates in vivo. Three exoglycosidases, a neuraminidase (NanA), beta-galactosidase (BgaA), and N-acetylglucosaminidase (StrH), have been previously demonstrated to sequentially deglycosylate N-linked glycans on host defense molecules, which coat the pneumococcal surface in vivo. This cleavage is proposed to alter the clearance function of these molecules, allowing pneumococci to persist in the airway. However, we propose that the exoglycosidase-dependent liberation of monosaccharides from these glycoconjugates in close proximity to the pneumococcal surface provides S. pneumoniae with a convenient source of fermentable carbohydrate in vivo. In this study, we demonstrate that S. pneumoniae is able to utilize complex N-linked human glycoconjugates as a sole source of carbon to sustain growth and that efficient growth is dependent upon the sequential deglycosylation of the glycoconjugate substrate by pneumococcal exoglycosidases. In addition to demonstrating a role for NanA, BgaA, and StrH, we have identified a function for the second pneumococcal neuraminidase, NanB, in the deglycosylation of host glycoconjugates and have demonstrated that NanB activity can partially compensate for the loss or dysfunction of NanA. To date, all known functions of pneumococcal neuraminidase have been attributed to NanA. Thus, this study describes the first proposed role for NanB by which it may contribute to S. pneumoniae colonization and pathogenesis.
引用
收藏
页码:221 / 230
页数:10
相关论文
共 42 条
[1]   The atypical amino-terminal LPNTG-containing domain of the pneumococcal human IgA1-specific protease is required for proper enzyme localization and function [J].
Bender, Matthew H. ;
Weiser, Jeffrey N. .
MOLECULAR MICROBIOLOGY, 2006, 61 (02) :526-543
[2]   CLONING AND NUCLEOTIDE-SEQUENCE OF THE STREPTOCOCCUS-PNEUMONIAE HYALURONIDASE GENE AND PURIFICATION OF THE ENZYME FROM RECOMBINANT ESCHERICHIA-COLI [J].
BERRY, AM ;
LOCK, RA ;
THOMAS, SM ;
RAJAN, DP ;
HANSMAN, D ;
PATON, JC .
INFECTION AND IMMUNITY, 1994, 62 (03) :1101-1108
[3]   Cloning and characterization of nanB, a second Streptococcus pneumoniae neuraminidase gene, and purification of the NanB enzyme from recombinant Escherichia coli [J].
Berry, AM ;
Lock, RA ;
Paton, JC .
JOURNAL OF BACTERIOLOGY, 1996, 178 (16) :4854-4860
[4]   Sequential deglycosylation and utilization of the N-linked, complex-type glycans of human α1-acid glycoprotein mediates growth of Streptococcus oralis [J].
Byers, HL ;
Tarelli, E ;
Homer, KA ;
Beighton, D .
GLYCOBIOLOGY, 1999, 9 (05) :469-479
[5]  
CAMARA M, 1994, INFECT IMMUN, V62, P3688
[6]   CLONING AND EXPRESSION OF THE BETA-N-ACETYLGLUCOSAMINIDASE GENE FROM STREPTOCOCCUS-PNEUMONIAE - GENERATION OF TRUNCATED ENZYMES WITH MODIFIED AGLYCON SPECIFICITY [J].
CLARKE, VA ;
PLATT, N ;
BUTTERS, TD .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1995, 270 (15) :8805-8814
[7]  
DENNO DM, 2002, GHANA W AFR J MED, V21, P233
[8]   Prognosis and outcomes of patients with community-acquired pneumonia - A meta-analysis [J].
Fine, MJ ;
Smith, MA ;
Carson, CA ;
Mutha, SS ;
Sankey, SS ;
Weissfeld, LA ;
Kapoor, WN .
JAMA-JOURNAL OF THE AMERICAN MEDICAL ASSOCIATION, 1996, 275 (02) :134-141
[9]   Role of RegM, a homologue of the catabolite repressor protein CcpA, in the virulence of Streptococcus pneumoniae [J].
Giammarinaro, P ;
Paton, JC .
INFECTION AND IMMUNITY, 2002, 70 (10) :5454-5461
[10]   Mannosidase production by viridans group streptococci [J].
Homer, KA ;
Roberts, G ;
Byers, HL ;
Tarelli, E ;
Whiley, RA ;
Philpott-Howard, J ;
Beighton, D .
JOURNAL OF CLINICAL MICROBIOLOGY, 2001, 39 (03) :995-1001