Abstract
In a previous study, Staphylococcus aureus purified cell walls (PCW), consisting of peptidoglycan (PG) plus covalently linked teichoic acid (TA), were found to be more active in complement consumption than isolated PG. Isolated TA has now been shown to be capable of activating complement. Mild sonication markedly increased the ability of PG to activate complement but had essentially no effect on the activities of PCW and TA. Optimal sonication of PG did not yield activities equal to those of PCW in dose-response and kinetic studies, which may imply that TA plays some role in complement consumption. Sonication did not lead to solubilization of PCW or PG but may have enhanced the activity of PG in complement consumption by better dispersing PG particles, thereby exposing more surface area. Lysostaphin solubilization of PCW and PG markedly decreased their activities in complement consumption. The PCW of an S. aureus TA-deficient mutant, which were mostly PG, caused similar amounts of complement consumption as the parent strain PCW. Of the treatments of PCW commonly used to isolate PG, formamide and periodate extractions in particular led to PG preparations with lower activities in complement consumption than the PCW from which they were prepared, although these activities were stimulated by sonication. When whole organisms were studied by using a TA-deficient mutant, a mutant with an additional cell surface polymer, and the TA-containing parent strains and complement consumption by these strains was compared, no difference was found in either the rate or the degree of complement activation. This led to experiments demonstrating that both material released extracellularly from staphylococci and the cytoplasmic fraction of S. aureus were active in complement consumption. The results of these experiments indicate that both physical and chemical factors must be considered in studies of complement activation by isolated bacterial cell wall components. Under certain conditions, staphylococcal TA may enhance complement activation, but studies with whole organisms clearly show that this cell wall constituent does not play an essential role in this process. In addition, studies of complement consumption with intact organisms have demonstrated that there may be contributions both from cell surface components and from material released by the cells.
MeSH Terms
Cell Wall/immunology
Complement Activation
Complement Pathway, Alternative
Freeze Drying
Freezing
Magnesium/pharmacology
Muramidase/pharmacology
Mutation
Peptidoglycan/isolation & purification,pharmacology
Sonication
Staphylococcus aureus/immunology
Teichoic Acids/pharmacology
Chemicals
Peptidoglycan
Teichoic Acids
Muramidase
Magnesium
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Wilkinson B J
Kim Y
Peterson P K
References (29)
29 references, click to expand
-
Teichoic acids and membrane function in bacteria.
Nature. 1970 Feb 7;225(5232):519-21
PMID: 5411858
-
Ribitol teichoic acid synthesis in bacteriophage-resistant mutants of Staphylococcus aureus H.
J Biol Chem. 1970 Oct 10;245(19):5101-6
PMID: 4248342
-
Dual pathways of complement interaction with guinea pig immunoglobulins.
J Immunol. 1971 Nov;107(5):1268-73
PMID: 5117668
-
C3 shunt activation in human serum chelated with EGTA.
J Immunol. 1972 Oct;109(4):807-9
PMID: 4627510
-
Peptidoglycan types of bacterial cell walls and their taxonomic implications.
Bacteriol Rev. 1972 Dec;36(4):407-77
PMID: 4568761
-
The reaction of zymosan with the properdin system in normal and C4-deficienct guinea pig serum. Demonstration of C3- and C5-cleaving multi-unit enzymes, both containing factor B, and acceleration of their formation by the classical complement pathway.
J Immunol. 1973 Nov;111(5):1389-400
PMID: 4795621
-
Mutants of staphylococci with altered cell walls.
Ann N Y Acad Sci. 1974 Jul 31;236(0):54-62
PMID: 4278863
-
Studies on the linkage between teichoic acid and peptidoglycan in a bacteriophage-resistant mutant of Staphylococcus aureus H.
Biochem J. 1975 Sep;149(3):637-47
PMID: 128354
-
Nonspecific complement activation by streptococcal structures. II. Properdin-independent initiation of the alternate pathway.
J Exp Med. 1976 Jun 1;143(6):1352-66
PMID: 818335
-
The role of the physical state of lipopolysaccharides in the interaction with complement. High molecular weight as prerequisite for the expression of anti-complementary activity.
Eur J Biochem. 1976 Jun 1;65(2):403-8
PMID: 949975
-
Activation of the alternative pathway by pneumococcal cell walls.
J Immunol. 1977 Feb;118(2):451-4
PMID: 14211
-
Chemotaxigenesis and complement fixation by Listeria monocytogenes cell wall fractions.
J Immunol. 1977 Nov;119(5):1723-6
PMID: 410883
-
Activation of the alternate complement pathway by peptidoglycan from streptococcal cell wall.
Infect Immun. 1978 Jan;19(1):296-303
PMID: 415005
-
Activation of the alternative complement pathway by pneumococcal cell wall teichoic acid.
J Immunol. 1978 Jan;120(1):174-8
PMID: 24071
-
The key role of peptidoglycan in the opsonization of Staphylococcus aureus.
J Clin Invest. 1978 Mar;61(3):597-609
PMID: 641141
-
Activation of complement by cell surface components of Staphylococcus aureus.
Infect Immun. 1978 May;20(2):388-92
PMID: 669803
-
Dichotomy between opsonization and serum complement activation by encapsulated staphylococci.
Infect Immun. 1978 Jun;20(3):770-5
PMID: 352958
-
Hydroxylamine oxidoreductase from Nitrosomonas: absorption spectra and content of heme and metal.
Biochemistry. 1978 Jul 25;17(15):2984-9
PMID: 698180
-
'In vitro' study of a reaction between the complement system and cellular DNA.
Immunology. 1978 Nov;35(5):779-84
PMID: 363605
-
Complement activation by cell wall fractions of Micropolyspora faeni.
Infect Immun. 1978 Nov;22(2):568-74
PMID: 730372
-
Cryptic peptidoglycan and the antiphagocytic effect of the Staphylococcus aureus capsule: model for the antiphagocytic effect of bacterial cell surface polymers.
Infect Immun. 1979 Feb;23(2):502-8
PMID: 422250
-
The role of Staphylococcus aureus cell-wall peptidoglycan, teichoic acid and protein A in the processes of complement activation and opsonization.
Immunology. 1979 Jul;37(3):615-21
PMID: 500119
-
Localization of the third component of complement on the cell wall of encapsulated Staphylococcus aureus M: implications for the mechanism of resistance to phagocytosis.
Infect Immun. 1979 Dec;26(3):1159-63
PMID: 393630
-
Opsonic recognition of staphylococci mediated by cell wall peptidoglycan: antibody-independent activation of human complement and opsonic activity of peptidoglycan antibodies.
J Immunol. 1980 Mar;124(3):1167-73
PMID: 7358981
-
Immunoglobulin E antibodies against Staphylococcus aureus cell walls in the sera of patients with hyperimmunoglobulinemia E and recurrent staphylococcal infection.
Infect Immun. 1980 Feb;27(2):563-8
PMID: 6991418
-
Studies of the receptor for phage A25 in group A streptococci: the role of peptidoglycan in reversible adsorption.
J Exp Med. 1977 Mar 1;145(3):578-93
PMID: 233903
-
Protein measurement with the Folin phenol reagent.
J Biol Chem. 1951 Nov;193(1):265-75
PMID: 14907713
-
THE ACTION OF HOT FORMAMIDE ON BACTERIAL CELL WALLS.
Biochem J. 1965 Jun;95:876-82
PMID: 14342528
-
The N-acetylation and estimation of hexosamines.
Biochem J. 1959 Sep;73:127-32
PMID: 14416360