Home LiteratureArticle Details
PMID: 22069659 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Review

Food poisoning and Staphylococcus aureus enterotoxins.

Toxins ·Vol. 2 ·No. 7 ·2010-00-00 ·Pages 1751-73

Argudín MÁ, Mendoza MC, Rodicio MR

Abstract

Staphylococcus aureus produces a wide variety of toxins including staphylococcal enterotoxins (SEs; SEA to SEE, SEG to SEI, SER to SET) with demonstrated emetic activity, and staphylococcal-like (SEl) proteins, which are not emetic in a primate model (SElL and SElQ) or have yet to be tested (SElJ, SElK, SElM to SElP, SElU, SElU2 and SElV). SEs and SEls have been traditionally subdivided into classical (SEA to SEE) and new (SEG to SElU2) types. All possess superantigenic activity and are encoded by accessory genetic elements, including plasmids, prophages, pathogenicity islands, vSa genomic islands, or by genes located next to the staphylococcal cassette chromosome (SCC) implicated in methicillin resistance. SEs are a major cause of food poisoning, which typically occurs after ingestion of different foods, particularly processed meat and dairy products, contaminated with S. aureus by improper handling and subsequent storage at elevated temperatures. Symptoms are of rapid onset and include nausea and violent vomiting, with or without diarrhea. The illness is usually self-limiting and only occasionally it is severe enough to warrant hospitalization. SEA is the most common cause of staphylococcal food poisoning worldwide, but the involvement of other classical SEs has been also demonstrated. Of the new SE/SEls, only SEH have clearly been associated with food poisoning. However, genes encoding novel SEs as well as SEls with untested emetic activity are widely represented in S. aureus, and their role in pathogenesis may be underestimated.

Keywords
Staphylococcus aureus emetic activity food poisoning gene location staphylococcal enterotoxins superantigens
MeSH Terms
Animals Bacterial Toxins/metabolism,toxicity Enterotoxins/metabolism,toxicity Humans Staphylococcal Food Poisoning/etiology Staphylococcus aureus/chemistry,metabolism,pathogenicity Superantigens/metabolism,toxicity
Chemicals
Bacterial Toxins Enterotoxins Superantigens
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Argudín María Ángeles
Department of Functional Biology (Section of Microbiology) and University Institute of Biotechnology of Asturias (IUBA), University of Oviedo, Oviedo, Spain. argudinmaria@gmail.com
Mendoza María Carmen
Rodicio María Rosario
References (143)
143 references, click to expand
  1. Staphylococcal enterotoxin H induces V alpha-specific expansion of T cells.
    J Immunol. 2003 Apr 15;170(8):4148-54 PMID: 12682246
  2. Investigation of the role of the disulphide bond in the activity and structure of staphylococcal enterotoxin C1.
    Mol Microbiol. 1994 Sep;13(5):897-909 PMID: 7815947
  3. Early kinetics of the transcriptional response of human leukocytes to staphylococcal superantigenic enterotoxins A and G.
    Microb Pathog. 2009 Sep;47(3):171-6 PMID: 19591915
  4. Identification and characterization of a new staphylococcal enterotoxin-related putative toxin encoded by two kinds of plasmids.
    Infect Immun. 2003 Oct;71(10):6088-94 PMID: 14500536
  5. Identification of a transcytosis epitope on staphylococcal enterotoxins.
    Infect Immun. 2002 Apr;70(4):2178-86 PMID: 11895985
  6. Molecular analysis of Staphylococcus aureus isolates associated with staphylococcal food poisoning in South Korea.
    J Appl Microbiol. 2006 Oct;101(4):864-71 PMID: 16968298
  7. An outbreak of staphylococcal food poisoning caused by enterotoxin H in mashed potato made with raw milk.
    FEMS Microbiol Lett. 2005 Nov 15;252(2):267-72 PMID: 16213675
  8. Purification of staphylococcal enterotoxin B.
    Biochemistry. 1965 Jun;4(6):1011-6 PMID: 4953912
  9. Novel multiplex PCR for the detection of the Staphylococcus aureus superantigen and its application to raw meat isolates in Korea.
    Int J Food Microbiol. 2007 Jun 10;117(1):99-105 PMID: 17439826
  10. Identification of a new enterotoxin as enterotoxin C.
    J Bacteriol. 1965 Nov;90(5):1481-5 PMID: 4954560
  11. Purification and some physicochemical properties of toxic-shock toxin.
    Biochemistry. 1983 Aug 2;22(16):3907-12 PMID: 6615808
  12. Further serological studies of staphylococcal enterotoxin.
    J Bacteriol. 1960 Jun;79:849-56 PMID: 13808165
  13. Sau1: a novel lineage-specific type I restriction-modification system that blocks horizontal gene transfer into Staphylococcus aureus and between S. aureus isolates of different lineages.
    J Bacteriol. 2006 Aug;188(15):5578-85 PMID: 16855248
  14. Superantigen natural affinity maturation revealed by the crystal structure of staphylococcal enterotoxin G and its binding to T-cell receptor Vbeta8.2.
    Proteins. 2007 Jul 1;68(1):389-402 PMID: 17427250
  15. A new staphylococcal enterotoxin, enterotoxin F, associated with toxic-shock-syndrome Staphylococcus aureus isolates.
    Lancet. 1981 May 9;1(8228):1017-21 PMID: 6112412
  16. Staphylococcus aureus enterotoxin B challenge of monkeys: correlation of plasma levels of arachidonic acid cascade products with occurrence of illness.
    Infect Immun. 1990 Nov;58(11):3494-9 PMID: 2172165
  17. Anti-opsonic properties of staphylokinase.
    Microbes Infect. 2005 Mar;7(3):476-84 PMID: 15792635
  18. The enterotoxin D plasmid of Staphylococcus aureus encodes a second enterotoxin determinant (sej).
    FEMS Microbiol Lett. 1998 Nov 15;168(2):227-33 PMID: 9835033
  19. Staphylococcus aureus and food poisoning.
    Genet Mol Res. 2003 Mar 31;2(1):63-76 PMID: 12917803
  20. Genetic and molecular analyses of the gene encoding staphylococcal enterotoxin D.
    J Bacteriol. 1989 Sep;171(9):4799-806 PMID: 2549000
  21. Crystal structure of the superantigen enterotoxin C2 from Staphylococcus aureus reveals a zinc-binding site.
    Structure. 1995 Aug 15;3(8):769-79 PMID: 7582894
  22. Standard nomenclature for the superantigens expressed by Staphylococcus.
    J Infect Dis. 2004 Jun 15;189(12):2334-6 PMID: 15181583
  23. The effect of staphylococcal enterotoxin on the epithelial mucosubstances of the small intestine of rhesus monkeys.
    Am J Pathol. 1970 Jul;60(1):1-18 PMID: 4193441
  24. Characterization of Staphylococcus aureus strains associated with food poisoning outbreaks in France.
    Int J Food Microbiol. 2007 Apr 20;115(3):369-75 PMID: 17306397
  25. Food poisoning by Staphylococcus aureus at a university festival.
    Jpn J Infect Dis. 2009 May;62(3):242-3 PMID: 19468193
  26. Genetic variation among Staphylococcus aureus strains from Norwegian bulk milk.
    Appl Environ Microbiol. 2005 Dec;71(12):8352-61 PMID: 16332822
  27. Staphylococcal enterotoxin induces emesis through increasing serotonin release in intestine and it is downregulated by cannabinoid receptor 1.
    Cell Microbiol. 2007 Sep;9(9):2267-77 PMID: 17517065
  28. Abdominal viscera as site of emetic action for staphylococcal enterotoxin in the monkey.
    J Infect Dis. 1965 Oct;115(4):330-6 PMID: 4953783
  29. Biochemical and biological properties of Staphylococcal enterotoxin K.
    Infect Immun. 2001 Jan;69(1):360-6 PMID: 11119525
  30. Enterotoxins and toxic shock syndrome toxin in Staphylococcus aureus recovered from human nasal carriers and manually handled foods: epidemiological and genetic findings.
    Microbes Infect. 2005 Feb;7(2):187-94 PMID: 15715991
  31. Effect of low water activity on staphylococcal enterotoxin A and B biosynthesis.
    J Food Prot. 2000 Apr;63(4):473-8 PMID: 10772212
  32. A novel loop domain in superantigens extends their T cell receptor recognition site.
    J Mol Biol. 2007 Aug 3;371(1):210-21 PMID: 17560605
  33. Residues defining V beta specificity in staphylococcal enterotoxins.
    Nat Struct Biol. 1995 Aug;2(8):680-6 PMID: 7552730
  34. Characterization of Staphylococcus aureus enterotoxin L.
    Infect Immun. 2003 May;71(5):2916-9 PMID: 12704169
  35. Transcription of the toxin genes present within the Staphylococcal phage phiSa3ms is intimately linked with the phage's life cycle.
    J Bacteriol. 2003 Dec;185(23):6841-51 PMID: 14617648
  36. Staphylococcal enterotoxin. Identification of a specific precipitating antibody with enterotoxin-neutralizing property.
    J Immunol. 1959 Sep;83:334-8 PMID: 13799262
  37. Effects of enterotoxin B on intestinal transport in vitro.
    Proc Soc Exp Biol Med. 1969 Sep;131(4):1159-62 PMID: 5811968
  38. Crystal and solution structures of superantigenic staphylococcal enterotoxins compared.
    Nat Struct Biol. 1994 Jun;1(6):358-60 PMID: 7664046
  39. Staphylococcal enterotoxin.
    Ann N Y Acad Sci. 1965 Jul 23;128(1):124-31 PMID: 4221871
  40. Complete genomes of two clinical Staphylococcus aureus strains: evidence for the rapid evolution of virulence and drug resistance.
    Proc Natl Acad Sci U S A. 2004 Jun 29;101(26):9786-91 PMID: 15213324
  41. An outbreak of community-acquired foodborne illness caused by methicillin-resistant Staphylococcus aureus.
    Emerg Infect Dis. 2002 Jan;8(1):82-4 PMID: 11749755
  42. Monkey feeding test for staphylococcal enterotoxin.
    Methods Enzymol. 1988;165:324-33 PMID: 3231111
  43. Immune evasion by a staphylococcal complement inhibitor that acts on C3 convertases.
    Nat Immunol. 2005 Sep;6(9):920-7 PMID: 16086019
  44. Cloning and nucleotide sequence of the type E staphylococcal enterotoxin gene.
    J Bacteriol. 1988 Jul;170(7):2954-60 PMID: 3384800
  45. Comparative inflammatory properties of staphylococcal superantigenic enterotoxins SEA and SEG: implications for septic shock.
    J Leukoc Biol. 2006 Oct;80(4):753-8 PMID: 16885504
  46. Transducing particles of Staphylococcus aureus pathogenicity island SaPI1 are comprised of helper phage-encoded proteins.
    J Bacteriol. 2007 Oct;189(20):7520-4 PMID: 17693489
  47. Identification of enterotoxin E.
    Infect Immun. 1971 Nov;4(5):593-5 PMID: 5005309
  48. A competitive mechanism for staphylococcal toxin SSL7 inhibiting the leukocyte IgA receptor, Fc alphaRI, is revealed by SSL7 binding at the C alpha2/C alpha3 interface of IgA.
    J Biol Chem. 2006 Jan 20;281(3):1389-93 PMID: 16293625
  49. Crystal structure of the superantigen staphylococcal enterotoxin type A.
    EMBO J. 1995 Jul 17;14(14):3292-301 PMID: 7628431
  50. Genes encoding staphylococcal enterotoxins G and I are linked and separated by DNA related to other staphylococcal enterotoxins.
    J Nat Toxins. 2001 Feb;10(1):1-8 PMID: 11288724
  51. Food-poisoning due to staphylococcal enterotoxin E.
    Lancet. 1972 Dec 23;2(7791):1375-6 PMID: 4118251
  52. Staphylococcal enterotoxin genes of classical and new types detected by PCR in France.
    Int J Food Microbiol. 2002 Jul 25;77(1-2):61-70 PMID: 12076039
  53. Staphylococcal enterotoxins, toxic shock syndrome toxin and streptococcal pyrogenic exotoxins: a comparative study of their molecular biology.
    Chem Immunol. 1992;55:1-35 PMID: 1418613
  54. The SaPIs: mobile pathogenicity islands of Staphylococcus.
    Chem Immunol Allergy. 2007;93:42-57 PMID: 17369699
  55. Estimation of human dose of staphylococcal enterotoxin A from a large outbreak of staphylococcal food poisoning involving chocolate milk.
    Int J Food Microbiol. 1988 Dec 31;7(4):311-6 PMID: 3275329
  56. Validation of antibacterial mechanism of action using regulated antisense RNA expression in Staphylococcus aureus.
    FEMS Microbiol Lett. 2004 Feb 16;231(2):177-84 PMID: 14987762
  57. Genome and virulence determinants of high virulence community-acquired MRSA.
    Lancet. 2002 May 25;359(9320):1819-27 PMID: 12044378
  58. Distribution of newly described enterotoxin-like genes in Staphylococcus aureus from food.
    Int J Food Microbiol. 2006 Apr 15;108(1):36-41 PMID: 16380185
  59. Staphylococcal enterotoxin gastroenteritis in rhesus monkeys.
    Am J Pathol. 1966 Mar;48(3):387-407 PMID: 4955962
  60. Toxic shock syndrome and bacterial superantigens: an update.
    Annu Rev Microbiol. 2001;55:77-104 PMID: 11544350
  61. Crystal structures of the staphylococcal toxin SSL5 in complex with sialyl Lewis X reveal a conserved binding site that shares common features with viral and bacterial sialic acid binding proteins.
    J Mol Biol. 2007 Dec 14;374(5):1298-308 PMID: 17996251
  62. Characterization and distribution of a new enterotoxin-related superantigen produced by Staphylococcus aureus.
    Microbiol Immunol. 2000;44(2):79-88 PMID: 10803494
  63. PCR detection of Staphylococcal enterotoxins (SEs) N, O, P, Q, R, U, and survey of SE types in Staphylococcus aureus isolates from food-poisoning cases in Taiwan.
    Int J Food Microbiol. 2008 Jan 15;121(1):66-73 PMID: 18068843
  64. Staphylococcal enterotoxins G and I, a cause of severe but reversible neonatal enteropathy.
    Clin Gastroenterol Hepatol. 2008 Feb;6(2):251-4 PMID: 18063418
  65. Relationships between toxin gene content and genetic background in nasal carried isolates of Staphylococcus aureus from Asturias, Spain.
    FEMS Microbiol Lett. 2005 Feb 15;243(2):447-54 PMID: 15686848
  66. Production of staphylococcal enterotoxins C1 and C2 and thermonuclease throughout the growth cycle.
    Appl Environ Microbiol. 1990 Feb;56(2):555-9 PMID: 2306093
  67. Transcytosis of staphylococcal superantigen toxins.
    J Exp Med. 1997 Apr 21;185(8):1447-54 PMID: 9126925
  68. PCR detection of staphylococcal enterotoxin genes in Staphylococcus spp. strains isolated from meat and dairy products. Evidence for new variants of seG and seI in S. aureus AB-8802.
    J Appl Microbiol. 2004;97(4):719-30 PMID: 15357721
  69. Staphylococcal food poisoning in the United Kingdom, 1969-90.
    Epidemiol Infect. 1993 Jun;110(3):519-31 PMID: 8519317
  70. The innate immune modulators staphylococcal complement inhibitor and chemotaxis inhibitory protein of Staphylococcus aureus are located on beta-hemolysin-converting bacteriophages.
    J Bacteriol. 2006 Feb;188(4):1310-5 PMID: 16452413
  71. First evidence of a food poisoning outbreak due to staphylococcal enterotoxin type E, France, 2009.
    Euro Surveill. 2010 Apr 01;15(13): PMID: 20394711
  72. Cysteinyl leukotrienes as mediators of staphylococcal enterotoxin B in the monkey.
    Eur J Clin Invest. 1987 Oct;17(5):455-9 PMID: 2826171
  73. Role of substance P in immediate-type skin reactions induced by staphylococcal enterotoxin B in unsensitized monkeys.
    J Allergy Clin Immunol. 1989 Dec;84(6 Pt 1):880-5 PMID: 2480969
  74. Structure of toxic shock syndrome toxin 1.
    Biochemistry. 1993 Dec 21;32(50):13761-6 PMID: 8268150
  75. Mitogenic toxins as MHC class II-dependent probes for T cell antigen receptors.
    Behring Inst Mitt. 1991 Feb;(88):170-6 PMID: 2049035
  76. Differential temporal expression of the staphylococcal enterotoxins genes during cell growth.
    Food Microbiol. 2009 Dec;26(8):896-904 PMID: 19835778
  77. Diversity in Staphylococcus aureus enterotoxins.
    Chem Immunol Allergy. 2007;93:24-41 PMID: 17369698
  78. Clonal complexes and diversity of exotoxin gene profiles in methicillin-resistant and methicillin-susceptible Staphylococcus aureus isolates from patients in a Spanish hospital.
    J Clin Microbiol. 2009 Jul;47(7):2097-105 PMID: 19458176
  79. Staphylococcal food poisoning in the United States. New facts and old misconceptions.
    JAMA. 1984 Jan 27;251(4):487-9 PMID: 6690814
  80. Staphylococcal enterotoxins.
    Int J Food Microbiol. 2000 Oct 1;61(1):1-10 PMID: 11028954
  81. A study of the enterotoxigenicity of coagulase-negative and coagulase-positive staphylococcal isolates from food poisoning outbreaks in Minas Gerais, Brazil.
    Int J Infect Dis. 2008 Jul;12(4):410-5 PMID: 18206412
  82. The crystal structure of staphylococcal enterotoxin type D reveals Zn2+-mediated homodimerization.
    EMBO J. 1996 Dec 16;15(24):6832-40 PMID: 9003758
  83. Nasal carriage of Staphylococcus aureus and prevention of nosocomial infections.
    Infection. 2005 Feb;33(1):3-8 PMID: 15750752
  84. The morphologic consequences of acute exogenous (Staphylococcic) gastroenteritis on the gastric mucosa.
    Gastroenterology. 1951 Nov;19(3):462-75 PMID: 14887842
  85. Staphylococcal superantigen-like 5 binds PSGL-1 and inhibits P-selectin-mediated neutrophil rolling.
    Blood. 2007 Apr 1;109(7):2936-43 PMID: 17132726
  86. Development of a multiplex polymerase chain reaction assay for detection and differentiation of Staphylococcus aureus in dairy products.
    J Food Prot. 2001 May;64(5):664-8 PMID: 11347997
  87. Staphylococcal enterotoxin-like toxins U2 and V, two new staphylococcal superantigens arising from recombination within the enterotoxin gene cluster.
    Infect Immun. 2006 Aug;74(8):4724-34 PMID: 16861660
  88. Staphylococcus aureus bacteriophages mediating the simultaneous lysogenic conversion of beta-lysin, staphylokinase and enterotoxin A: molecular mechanism of triple conversion.
    J Gen Microbiol. 1989 Jun;135(6):1679-97 PMID: 2533245
  89. Characterization of a putative pathogenicity island from bovine Staphylococcus aureus encoding multiple superantigens.
    J Bacteriol. 2001 Jan;183(1):63-70 PMID: 11114901
  90. Characterization of a novel staphylococcal enterotoxin-like superantigen, a member of the group V subfamily of pyrogenic toxins.
    Biochemistry. 2002 Nov 26;41(47):14033-40 PMID: 12437361
  91. The crystal structure of staphylococcal enterotoxin H: implications for binding properties to MHC class II and TcR molecules.
    J Mol Biol. 2000 Sep 22;302(3):527-37 PMID: 10986116
  92. The gene for toxic shock toxin is carried by a family of mobile pathogenicity islands in Staphylococcus aureus.
    Mol Microbiol. 1998 Jul;29(2):527-43 PMID: 9720870
  93. Water relations of Staphylococcus aureus at 30 degrees C.
    Aust J Biol Sci. 1953 Nov;6(4):549-64 PMID: 13126033
  94. Identification of a novel gene cluster encoding staphylococcal exotoxin-like proteins: characterization of the prototypic gene and its protein product, SET1.
    Infect Immun. 2000 Aug;68(8):4407-15 PMID: 10899837
  95. Chemotaxis inhibitory protein of Staphylococcus aureus, a bacterial antiinflammatory agent.
    J Exp Med. 2004 Mar 1;199(5):687-95 PMID: 14993252
  96. Recognition and management of Staphylococcus aureus toxin-mediated disease.
    Intern Med J. 2005 Dec;35 Suppl 2:S106-19 PMID: 16271055
  97. The crystal structure of staphylococcal superantigen-like protein 11 in complex with sialyl Lewis X reveals the mechanism for cell binding and immune inhibition.
    Mol Microbiol. 2007 Dec;66(6):1342-55 PMID: 18045383
  98. An extensive outbreak of staphylococcal food poisoning due to low-fat milk in Japan: estimation of enterotoxin A in the incriminated milk and powdered skim milk.
    Epidemiol Infect. 2003 Feb;130(1):33-40 PMID: 12613743
  99. A subset of Staphylococcus aureus strains harboring staphylococcal cassette chromosome mec (SCCmec) type IV is deficient in CcrAB-mediated SCCmec excision.
    Antimicrob Agents Chemother. 2006 Aug;50(8):2782-8 PMID: 16870772
  100. Genome diversification in Staphylococcus aureus: Molecular evolution of a highly variable chromosomal region encoding the Staphylococcal exotoxin-like family of proteins.
    Infect Immun. 2003 May;71(5):2827-38 PMID: 12704157
  101. Comprehensive analysis of classical and newly described staphylococcal superantigenic toxin genes in Staphylococcus aureus isolates.
    FEMS Microbiol Lett. 2005 May 15;246(2):191-8 PMID: 15899405
  102. Exotoxins of Staphylococcus aureus.
    Clin Microbiol Rev. 2000 Jan;13(1):16-34, table of contents PMID: 10627489
  103. Crystal structure of microbial superantigen staphylococcal enterotoxin B at 1.5 A resolution: implications for superantigen recognition by MHC class II molecules and T-cell receptors.
    J Mol Biol. 1998 Mar 20;277(1):61-79 PMID: 9514739
  104. Outbreak of staphylococcal food intoxication after consumption of pasteurized milk products, June 2007, Austria.
    Wien Klin Wochenschr. 2009;121(3-4):125-31 PMID: 19280138
  105. Characterization of novel staphylococcal enterotoxin-like toxin type P.
    Infect Immun. 2005 Sep;73(9):5540-6 PMID: 16113270
  106. Mast cell heterogeneity: effects of neuroenteric peptides on histamine release.
    J Immunol. 1985 Aug;135(2):1331-7 PMID: 2409146
  107. Food-related illness and death in the United States.
    Emerg Infect Dis. 1999 Sep-Oct;5(5):607-25 PMID: 10511517
  108. Cytotoxin and pyrogenic toxin superantigen gene profiles of Staphylococcus aureus associated with subclinical mastitis in dairy cows and relationships with macrorestriction genomic profiles.
    J Clin Microbiol. 2005 Mar;43(3):1278-84 PMID: 15750096
  109. Structural basis of superantigen action inferred from crystal structure of toxic-shock syndrome toxin-1.
    Nature. 1994 Jan 6;367(6458):94-7 PMID: 8107781
  110. Diversity of prophages in dominant Staphylococcus aureus clonal lineages.
    J Bacteriol. 2009 Jun;191(11):3462-8 PMID: 19329640
  111. Associations between enterotoxin gene cluster types egc1, egc2 and egc3, agr types, enterotoxin and enterotoxin-like gene profiles, and molecular typing characteristics of human nasal carriage and animal isolates of Staphylococcus aureus.
    J Med Microbiol. 2009 Jan;58(Pt 1):13-25 PMID: 19074649
  112. Rapid differentiation of Staphylococcus aureus isolates harbouring egc loci with pseudogenes psient1 and psient2 and the selu or seluv gene using PCR-RFLP.
    J Med Microbiol. 2007 Feb;56(Pt 2):208-216 PMID: 17244802
  113. Identification of a fourth staphylococcal enterotoxin, enterotoxin D.
    J Bacteriol. 1967 Dec;94(6):1875-82 PMID: 4965366
  114. The bacterial superantigen and superantigen-like proteins.
    Immunol Rev. 2008 Oct;225:226-43 PMID: 18837785
  115. Mass outbreak of food poisoning disease caused by small amounts of staphylococcal enterotoxins A and H.
    Appl Environ Microbiol. 2005 May;71(5):2793-5 PMID: 15870376
  116. Identification and characterization of staphylococcal enterotoxin types G and I from Staphylococcus aureus.
    Infect Immun. 1998 Jul;66(7):3337-48 PMID: 9632603
  117. Identification of a new putative enterotoxin SEU encoded by the egc cluster of Staphylococcus aureus.
    J Appl Microbiol. 2003;95(1):38-43 PMID: 12807452
  118. Inactivation of staphylococcal enterotoxin A by chemical modification.
    Biochem Biophys Res Commun. 1982 Mar 15;105(1):121-6 PMID: 6807298
  119. The Co-crystal structure of staphylococcal enterotoxin type A with Zn2+ at 2.7 A resolution. Implications for major histocompatibility complex class II binding.
    J Biol Chem. 1996 Dec 13;271(50):32212-6 PMID: 8943278
  120. Relationship between enterotoxic- and T lymphocyte-stimulating activity of staphylococcal enterotoxin B.
    J Immunol. 1990 Jun 15;144(12):4501-6 PMID: 2161873
  121. Crystal structure of staphylococcal enterotoxin B, a superantigen.
    Nature. 1992 Oct 29;359(6398):801-6 PMID: 1436058
  122. Functional analysis of the disulphide loop mutant of staphylococcal enterotoxin C2.
    Appl Microbiol Biotechnol. 2009 Apr;82(5):861-71 PMID: 19082587
  123. The staphylococcal enterotoxins and their relatives.
    Science. 1990 Jun 1;248(4959):1066 PMID: 2343314
  124. Genome sequence of Staphylococcus aureus strain Newman and comparative analysis of staphylococcal genomes: polymorphism and evolution of two major pathogenicity islands.
    J Bacteriol. 2008 Jan;190(1):300-10 PMID: 17951380
  125. High prevalence of superantigens associated with the egc locus in Staphylococcus aureus isolates from patients with atopic eczema.
    Eur J Clin Microbiol Infect Dis. 2003 May;22(5):306-9 PMID: 12743832
  126. Characterization of Staphylococcus aureus coagulase type VII isolates from staphylococcal food poisoning outbreaks (1980-1995) in Tokyo, Japan, by pulsed-field gel electrophoresis.
    J Clin Microbiol. 2000 Oct;38(10):3746-9 PMID: 11015395
  127. Biochemical and mutational analysis of the histidine residues of staphylococcal enterotoxin A.
    Infect Immun. 1996 Mar;64(3):885-90 PMID: 8641796
  128. The detection of enterotoxins and toxic shock syndrome toxin genes in Staphylococcus aureus by polymerase chain reaction.
    J Food Prot. 2000 Apr;63(4):479-88 PMID: 10772213
  129. Foodborne staphylococcal illness.
    Lancet. 1990 Oct 27;336(8722):1044-6 PMID: 1977028
  130. egc, a highly prevalent operon of enterotoxin gene, forms a putative nursery of superantigens in Staphylococcus aureus.
    J Immunol. 2001 Jan 1;166(1):669-77 PMID: 11123352
  131. Genetic procedures for identification of enterotoxigenic strains of Staphylococcus aureus from three food poisoning outbreaks.
    Int J Food Microbiol. 2004 Aug 1;94(3):279-86 PMID: 15246239
  132. Staphylococcus aureus: the toxic presence of a pathogen extraordinaire.
    Curr Med Chem. 2009;16(30):4003-19 PMID: 19747126
  133. Structural basis for evasion of IgA immunity by Staphylococcus aureus revealed in the complex of SSL7 with Fc of human IgA1.
    Proc Natl Acad Sci U S A. 2007 Sep 18;104(38):15051-6 PMID: 17848512
  134. Structural evidence for the evolution of pyrogenic toxin superantigens.
    J Mol Evol. 2000 Dec;51(6):520-31 PMID: 11116326
  135. Staphylococcal enterotoxin synthesis during the exponential, transitional, and stationary growth phases.
    Infect Immun. 1974 Feb;9(2):229-35 PMID: 4205941
  136. Detection of seg, seh, and sei genes in Staphylococcus aureus isolates and determination of the enterotoxin productivities of S. aureus isolates Harboring seg, seh, or sei genes.
    J Clin Microbiol. 2002 Mar;40(3):857-62 PMID: 11880405
  137. Identification and characterization of two novel staphylococcal enterotoxins, types S and T.
    Infect Immun. 2008 Nov;76(11):4999-5005 PMID: 18710864
  138. The staphylococcal superantigen-like protein 7 binds IgA and complement C5 and inhibits IgA-Fc alpha RI binding and serum killing of bacteria.
    J Immunol. 2005 Mar 1;174(5):2926-33 PMID: 15728504
  139. Detection of staphylococcal enterotoxin H by an enzyme-linked immunosorbent assay.
    J Food Prot. 1996 Mar;59(3):327-30 PMID: 10463455
  140. OB(oligonucleotide/oligosaccharide binding)-fold: common structural and functional solution for non-homologous sequences.
    EMBO J. 1993 Mar;12(3):861-7 PMID: 8458342
  141. Skin reactivity of unsensitized monkeys upon challenge with staphylococcal enterotoxin B: a new approach for investigating the site of toxin action.
    Infect Immun. 1985 Dec;50(3):869-76 PMID: 2866161
  142. Identification and purification of a new staphylococcal enterotoxin, H.
    Appl Environ Microbiol. 1995 Apr;61(4):1438-43 PMID: 7747964
  143. Lack of complete correlation between emetic and T-cell-stimulatory activities of staphylococcal enterotoxins.
    Infect Immun. 1993 Aug;61(8):3175-83 PMID: 8335347
Article Info
Journal
Toxins
Abbr.
Toxins (Basel)
ISSN
2072-6651
Published
2010-00-00
Epub
2010-00-05
Pages
1751-73
Language
English
Region
Switzerland
NLM ID
101530765
PMCID
PMC3153270
Subset
IM
Analysis Services
Analysis Services

Contact

No. 2 Wenbo Road, Zhangqiu District, Jinan, Shandong

Qilu Normal University · Genelibs Bioinformatics Lab

750 Shunhua Rd, Jinan

2F, Bldg F, University Science Park

Tel: 0531-88819269

WeChat Official Account

Follow our WeChat subscription account for real-time updates and the latest in medical and biological research.


Business Email

E-mail: product@genelibs.com