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Identification of New Autolytic Sites of Recombinant Truncated Mature Human Fibroblast Stromelysin By Mass Spectrometry

  1. Author:
    Qoronfleh, M. W.
    Chowdhury, S. K.
    Eshraghi, J.
    Ho, T.
    Brake, P. G.
    Banks, T.
    Huang, J.
    Pulvino, T.
    Jones, B. N.
  2. Author Address

    Qoronfleh MW NCI FREDERICK CANC RES & DEV CTR SAIC FREDERICK POB B BLDG 322 FREDERICK, MD 21702 USA SANOFI WINTHROP INC DEPT CELLULAR & MOL BIOL MALVERN, PA USA SANOFI WINTHROP INC DEPT BIOCHEM MALVERN, PA USA SANOFI WINTHROP INC DEPT ANALYT SCI MALVERN, PA USA
    1. Year: 1997
  1. Journal: International Journal of Peptide and Protein Research
    1. 49
    2. 6
    3. Pages: 612-619
  2. Type of Article: Article
  1. Abstract:

    Stromelysin has been proposed to play a major role in the pathologic degradation of diseased cartilage of osteoarthritis and rheumatoid arthritis patients, A truncated, recombinant form of this enzyme, with the sequence Phe(83) to Thr(260) (mSL-t), has been expressed and purified from E. coli to investigate its biochemical and biophysical properties, and to develop inhibitors for arthritis treatment, LC/ESI-MS technique was utilized for the characterization of mSL-t, The mass spectra of mSL-t showed the presence of a number of different protein components in addition to the full-length mSL-t form. We have demonstrated that protein degradation arose from autolysis. Molecular weights determined by LC/ESI-MS of these autolysis products allowed for the identification of new autolytic sites in mSL-t. Furthermore, two strategies were undertaken to prepare mSL-t free of degradation products. These include preparation of a mutant form of the enzyme in which Arg(163) was substituted for Leu(163) and purification of mSL-t using affinity chromatography, The LC/ESI-MS data of the mutant protein confirmed the Leu to Arg mutation. The affinity-purified material showed only one LC peak in the LC/MS chromatograms, and the mass spectrum of the peak identified only the intact protein, demonstrating that the full-length protein has been successfully separated from the autodegradation products and further autolysis of the enzyme has been prevented. (C) Munksgaard 1997. [References: 25]

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