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Chemical Characterization of Macrophage Cytotoxicity Factor,Macrophage Migration Inhibitory Factor,T-Helper Cell-Replacing Factor and Colony-Stimulating Factor from Culture Supernatants of Concanavalin A-Stimulated Murine Spleen Cells
Authors:L. Hübner  E.M. Kniep  H. Laukel  C. Sorg  H. Fischer  W.D. Gassel  K. Havemann  B. Kickhöfen  M.-L. Lohmann-Matthes  A. Schimpl  E. Wecker
Affiliation:1. Institut für Virologie and Immunbiologie der Universität Würzburg, Federal Republic of Germany;2. Max-Planck-Institut für Immunbiologie, Freiburg, Federal Republic of Germany;3. Medizinische Klinik der Universität Marburg, Federal Republic of Germany;4. Abteilung für Experimentelle Dermatologie, Universitäts-Hautklinik, Münster, Federal Republic of Germany
Abstract:
Supernatants from Concanavalin A-stimulated murine spleen cells were subjected to hydrophobic interaction chromatography on phenyl-Sepharose. Macrophage cytotoxicity factor (MCF), macrophage migration inhibitory factor (MIF), T-helper cell-replacing factor (TRF) and colony-stimulating factor (CSF) were bound at high ionic strength and were released stepwise at low ionic strength. CSF thus could be separated from MCF, MIF and TRF and the bulk of other proteins. Chromatography of pools containing MCF, MIF and TRF on Sephadex did not lead to a separation of the three activities which were all found in a molecular weight range of 25.000-55.000. Isoelectric focusing of these pools in pH range from 4 to 9 gave two peaks for MCF at pH 8.2 and 7.2, whereas MIF activity focused from pH 4.5 to 5.5. TRF activity was found in a single sharp peak at pH 5.3. The results demonstrate that the four biological activities can be distinguished on a chemical basis and are accessible for purification and chemical characterization.
Keywords:MCF  Macrophage cytotoxicity factor  MIF  Macrophage migration inhibitory factor  TRF  T-helper cell-replacing factor  CSF  Colony-stimulating factor  CFU-C  Colony-forming units  MEM-E  Minimum essential medium with Earle's Salts  BSS(-)  Balanced salt solution lacking phenol red  FCS  Fetal calf seru
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