Fibronectin which is recognized for its ability to mediate substrate adhesion of eucaryotic cells has also been shown to bind to Staphylococcus aureus (Kuusela, P. (1978) Nature (Lond)2 76, 718-720). A further characterization of the interaction of fibronectin with staphylococci is presented here. The binding of 1251- fibronectin to S. aureus, strain Cowan 1, is specific, time-dependent, functionally irreversible, and occurs to both live and heat-killed cells. Furthermore, staphylocci may be saturated with fibronectin at a level which suggests the presence of 250 receptors/cell. A lysate produced by digestion of staphylococcal cells with a bacteriolytic enzyme (lysostaphin) inhibited the binding of 125I-fibronectin to bacteria. The lysate was depleted of its inhibitory activity by passage through a column of Sepharose substituted with fibronectin. The inhibitory activity was destroyed when the lysate was incubated with trypsin or pronase, and a lysate prepared from trypsin-treated cells did not have inhibitory activity. These data suggest that the inhibitory activity of the lysate is due to solubilized surface proteins acting as receptors for fibronectin. Staphylococcal mutants that selectively had lost protein A or fibronectin receptors could be isolated, which suggests the presence of fibronectin receptors distinctly different from protein A. Externally 125 I-labeled proteins from the different mutants were analyzed by affinity chromatography on fibronectin-Sepharose followed by gel electrophoresis. The fibronectin receptor was tentatively identified as a protein with an apparenMt , = 18,000. This component was found in fibronectin-binding strains but was absent in strains deficient in fibronectin receptors.

Fibronectin receptors from Staphylococcus aureus

SPEZIALE, PIETRO;
1983-01-01

Abstract

Fibronectin which is recognized for its ability to mediate substrate adhesion of eucaryotic cells has also been shown to bind to Staphylococcus aureus (Kuusela, P. (1978) Nature (Lond)2 76, 718-720). A further characterization of the interaction of fibronectin with staphylococci is presented here. The binding of 1251- fibronectin to S. aureus, strain Cowan 1, is specific, time-dependent, functionally irreversible, and occurs to both live and heat-killed cells. Furthermore, staphylocci may be saturated with fibronectin at a level which suggests the presence of 250 receptors/cell. A lysate produced by digestion of staphylococcal cells with a bacteriolytic enzyme (lysostaphin) inhibited the binding of 125I-fibronectin to bacteria. The lysate was depleted of its inhibitory activity by passage through a column of Sepharose substituted with fibronectin. The inhibitory activity was destroyed when the lysate was incubated with trypsin or pronase, and a lysate prepared from trypsin-treated cells did not have inhibitory activity. These data suggest that the inhibitory activity of the lysate is due to solubilized surface proteins acting as receptors for fibronectin. Staphylococcal mutants that selectively had lost protein A or fibronectin receptors could be isolated, which suggests the presence of fibronectin receptors distinctly different from protein A. Externally 125 I-labeled proteins from the different mutants were analyzed by affinity chromatography on fibronectin-Sepharose followed by gel electrophoresis. The fibronectin receptor was tentatively identified as a protein with an apparenMt , = 18,000. This component was found in fibronectin-binding strains but was absent in strains deficient in fibronectin receptors.
1983
Biochemistry & Biophysics focuses on the structure and chemistry of biomolecules and covers all aspects of basic biochemistry/biophysics, including molecular structure, enzyme kinetics and protein-protein interaction; this category also contains cross-disciplinary resources focused on a specific class of biological molecules, e.g., nucleic acids, steroids, magnesium, growth factors, free radicals, bio-membranes, and peptides. Excluded are resources dealing with the application of biochemical techniques to specific topics listed elsewhere in CC/LS. Resources with a strong emphasis on the integration of biochemical pathways (such as signal transduction or molecular motors) at the cellular level are placed in the Cell & Developmental Biology category.
Nessuno
Inglese
Internazionale
STAMPA
258
5
3396
3401
Staphylococcus aureus; Receptor; Fibronectin; Purification
6
info:eu-repo/semantics/article
262
Rydén, C; Rubin, K; Speziale, Pietro; Höök, M; Lindberg, M; Wadström, T.
1 Contributo su Rivista::1.1 Articolo in rivista
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11571/140453
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