KEGG   PATHWAY: btrm05133
Entry
btrm05133                   Pathway                                
Name
Pertussis - Bordetella trematum
Description
Pertussis, also known as whooping cough, is an acute respiratory infectious disease caused by a bacteria called Bordetella Pertussis. The characteristic symptoms are paroxysmal cough, inspiratory wheezing and post-tussive vomiting.
Following the inhalation of respiratory secretions from an infected individual, bacteria enter the upper respiratory tract and adhere to epithelial cells. Several adhesion factors have been implicated: the filamentous hemagglutinin (FHA), fimbriae, and pertactin (Prn).
Pertussis toxin (Ptx) and adenylate cyclase toxin (ACT) have been identified so far as major protein toxins of B. pertussis. PTX is a hexameric AB5-type exotoxin. Catalytic A subunit catalyzes the ADP-ribosylation of the Gi subunits of the heterotrimeric G protein, then inhibits multiple downstream pathways. ACT is able to penetrate the cytoplasmic membrane of host cells and becomes activated through the cleavage and the binding of calmodulin (CaM). Activated ACT converts ATP to cyclic AMP and subverts cellular signaling pathways.
Class
Human Diseases; Infectious disease: bacterial
Pathway map
btrm05133  Pertussis
btrm05133

Organism
Bordetella trematum [GN:btrm]
Gene
SAMEA390648701560  sfaA_3; fimbrial subunit [KO:K07345]
SAMEA390648701561  fimbrial subunit [KO:K07345]
SAMEA390648701562  fimA_4; fimbrial subunit [KO:K07345]
SAMEA390648701563  fimbrial subunit [KO:K07345]
SAMEA390648701564  fimbrial subunit [KO:K07345]
SAMEA390648701565  fimbrial subunit [KO:K07345]
SAMEA390648701566  fimA_5; fimbrial subunit [KO:K07345]
SAMEA390648701567  fimbrial subunit [KO:K07345]
SAMEA390648701568  hifA_3; fimbrial subunit [KO:K07345]
SAMEA390648701769  fimbrial subunit [KO:K07345]
SAMEA390648700770  sfaA_1; fimbrial subunit [KO:K07345]
SAMEA390648700771  hifA_1; fimbrial subunit [KO:K07345]
SAMEA390648700772  fimA_1; fimbrial subunit [KO:K07345]
SAMEA390648700773  hifA_2; fimbrial subunit [KO:K07345]
SAMEA390648700774  elfA_1; fimbrial subunit [KO:K07345]
SAMEA390648700775  fimbrial subunit [KO:K07345]
SAMEA390648700776  sfaA_2; fimbrial subunit [KO:K07345]
SAMEA390648700777  fimbrial subunit [KO:K07345]
SAMEA390648700778  fimA_2; fimbrial subunit [KO:K07345]
SAMEA390648700779  elfA_2; fimbrial subunit [KO:K07345]
SAMEA390648700780  elfA_3; fimbrial subunit [KO:K07345]
SAMEA390648700781  elfA_4; fimbrial subunit [KO:K07345]
SAMEA390648700782  fimF; fimbrial subunit [KO:K07345]
SAMEA390648700783  fimbrial subunit [KO:K07345]
SAMEA390648703154  fhaA; outer membrane fimbrial usher protein [KO:K07347]
SAMEA390648701844  fimC2; outer membrane usher protein [KO:K07347]
SAMEA390648703155  fhaE_1; Fimbrial adhesin [KO:K07347]
SAMEA390648703157  fhaC_2; hemolysin activator protein [KO:K07326]
SAMEA390648703511  sphB1_3; autotransporter serine protease [KO:K12688] [EC:3.4.21.-]
SAMEA390648703510  sphB1_2; autotransporter serine protease [KO:K12688] [EC:3.4.21.-]
SAMEA390648703152  fhaB_5; Filamentous hemagglutinin/adhesin [KO:K15125]
SAMEA390648702656  fhaB_2; filamentous hemagglutinin/adhesin [KO:K15125]
SAMEA390648702676  fhaB_3; adhesin [KO:K15125]
SAMEA390648702677  fhaB_4; filamentous hemagglutinin/adhesin [KO:K15125]
SAMEA390648700410  hagB1; hemolysin/hemagglutin [KO:K15125]
SAMEA390648700421  fhaB_1; adhesin [KO:K15125]
SAMEA390648700821  tolC_1; outer membrane protein [KO:K12340]
SAMEA390648702007  ttgC_3; multidrug efflux pump [KO:K12340]
SAMEA390648702989  tolC_2; outer membrane protein [KO:K12340]
SAMEA390648700533  pagP; palmitoyl transferase [KO:K12973] [EC:2.3.1.251]
SAMEA390648703227  bvgS_2; virulence sensor protein [KO:K07679] [EC:2.7.13.3]
SAMEA390648703228  bvgA; virulence factors transcription regulator [KO:K07690]
Compound
C00002  ATP
C00076  Calcium cation
C00238  Potassium cation
C00253  Nicotinate
C00338  Lipopolysaccharide
C00374  Heparin
C00575  3',5'-Cyclic AMP
C05005  Glycolipid
C12505  Magnesium sulfate
C19596  Lipooligosaccharide
Reference
  Authors
de Gouw D, Diavatopoulos DA, Bootsma HJ, Hermans PW, Mooi FR
  Title
Pertussis: a matter of immune modulation.
  Journal
FEMS Microbiol Rev 35:441-74 (2011)
DOI:10.1111/j.1574-6976.2010.00257.x
Reference
  Authors
Carbonetti NH
  Title
Pertussis toxin and adenylate cyclase toxin: key virulence factors of Bordetella pertussis and cell biology tools.
  Journal
Future Microbiol 5:455-69 (2010)
DOI:10.2217/fmb.09.133
Reference
  Authors
van den Berg BM, van Furth R, Hazenbos WL
  Title
Activation of complement receptor 3 on human monocytes by cross-linking of very-late antigen-5 is mediated via protein tyrosine kinases.
  Journal
Immunology 98:197-202 (1999)
DOI:10.1046/j.1365-2567.1999.00871.x
Reference
  Authors
Mazar J, Cotter PA
  Title
Topology and maturation of filamentous haemagglutinin suggest a new model for two-partner secretion.
  Journal
Mol Microbiol 62:641-54 (2006)
DOI:10.1111/j.1365-2958.2006.05392.x
Reference
  Authors
Hewlett EL, Donato GM, Gray MC
  Title
Macrophage cytotoxicity produced by adenylate cyclase toxin from Bordetella pertussis: more than just making cyclic AMP!
  Journal
Mol Microbiol 59:447-59 (2006)
DOI:10.1111/j.1365-2958.2005.04958.x
Reference
  Authors
Dunne A, Ross PJ, Pospisilova E, Masin J, Meaney A, Sutton CE, Iwakura Y, Tschopp J, Sebo P, Mills KH
  Title
Inflammasome activation by adenylate cyclase toxin directs Th17 responses and protection against Bordetella pertussis.
  Journal
J Immunol 185:1711-9 (2010)
DOI:10.4049/jimmunol.1000105
Reference
  Authors
Hickey FB, Brereton CF, Mills KH
  Title
Adenylate cycalse toxin of Bordetella pertussis inhibits TLR-induced IRF-1 and IRF-8 activation and IL-12 production and enhances IL-10 through MAPK activation in dendritic cells.
  Journal
J Leukoc Biol 84:234-43 (2008)
DOI:10.1189/jlb.0208113
Reference
  Authors
Spensieri F, Fedele G, Fazio C, Nasso M, Stefanelli P, Mastrantonio P, Ausiello CM
  Title
Bordetella pertussis inhibition of interleukin-12 (IL-12) p70 in human monocyte-derived dendritic cells blocks IL-12 p35 through adenylate cyclase toxin-dependent cyclic AMP induction.
  Journal
Infect Immun 74:2831-8 (2006)
DOI:10.1128/IAI.74.5.2831-2838.2006
Reference
  Authors
Fiser R, Masin J, Basler M, Krusek J, Spulakova V, Konopasek I, Sebo P
  Title
Third activity of Bordetella adenylate cyclase (AC) toxin-hemolysin. Membrane translocation of AC domain polypeptide promotes calcium influx into CD11b+ monocytes independently of the catalytic and hemolytic activities.
  Journal
J Biol Chem 282:2808-20 (2007)
DOI:10.1074/jbc.M609979200
Reference
  Authors
Wang ZY, Yang D, Chen Q, Leifer CA, Segal DM, Su SB, Caspi RR, Howard ZO, Oppenheim JJ
  Title
Induction of dendritic cell maturation by pertussis toxin and its B subunit differentially initiate Toll-like receptor 4-dependent signal transduction pathways.
  Journal
Exp Hematol 34:1115-24 (2006)
DOI:10.1016/j.exphem.2006.04.025
Reference
  Authors
Fan H, Peck OM, Tempel GE, Halushka PV, Cook JA
  Title
Toll-like receptor 4 coupled GI protein signaling pathways regulate extracellular signal-regulated kinase phosphorylation and AP-1 activation independent of NFkappaB activation.
  Journal
Shock 22:57-62 (2004)
DOI:10.1097/01.shk.0000129759.58490.d6
Reference
  Authors
Lee MS, Kim YJ
  Title
Signaling pathways downstream of pattern-recognition receptors and their cross talk.
  Journal
Annu Rev Biochem 76:447-80 (2007)
DOI:10.1146/annurev.biochem.76.060605.122847
Reference
  Authors
Kawai T, Akira S
  Title
The role of pattern-recognition receptors in innate immunity: update on Toll-like receptors.
  Journal
Nat Immunol 11:373-84 (2010)
DOI:10.1038/ni.1863
Reference
  Authors
Ferlito M, Romanenko OG, Guyton K, Ashton S, Squadrito F, Halushka PV, Cook JA
  Title
Implication of Galpha i proteins and Src tyrosine kinases in endotoxin-induced signal transduction events and mediator production.
  Journal
J Endotoxin Res 8:427-35 (2002)
Reference
  Authors
Han HJ, Kuwae A, Abe A, Arakawa Y, Kamachi K
  Title
Differential expression of type III effector BteA protein due to IS481 insertion in Bordetella pertussis.
  Journal
PLoS One 6:e17797 (2011)
DOI:10.1371/journal.pone.0017797
Reference
  Authors
Beier D, Gross R
  Title
Regulation of bacterial virulence by two-component systems.
  Journal
Curr Opin Microbiol 9:143-52 (2006)
DOI:10.1016/j.mib.2006.01.005
Reference
  Authors
Cotter PA, Jones AM
  Title
Phosphorelay control of virulence gene expression in Bordetella.
  Journal
Trends Microbiol 11:367-73 (2003)
DOI:10.1016/S0966-842X(03)00156-2
Related
pathway
btrm02020  Two-component system
btrm03070  Bacterial secretion system
KO pathway
ko05133   
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