9
Views
3
CrossRef citations to date
0
Altmetric
Physiology/Biochemistry

Extracellular protease production by submerged cultures of Schizophyllum commune

, , , &
Pages 883-889 | Accepted 18 May 1998, Published online: 28 Aug 2018

LITERATURE CITED

  • Archer, D. B., and D. A. Wood. 1995. Fungal exoenzymes. Pp. 137–163. In: The growing fungus. Eds., N. A. R. Gow and G. M. Gadd. Chapman and Hall, London.
  • Benyon, R. J., and J. S. Bond. 1989. Proteolytic enzymes: a practical approach. IRL, Oxford. 259 pp.
  • Bilbrey, R. E., A. R. Penheiter, A. C. Gathman, and W. W. Lilly. 1996. Characterization of a novel phenylalanine specific aminopeptidase from Schizophyllum commune. Mycol. Res. 100: 462–466.
  • Boddy, L., and S. C. Watkinson. 1995. Wood decomposition, higher fungi, and their role in nutrient redistribution. Canad. J. Bot. 73: S1377–S1383.
  • Bradford, M. M. 1976. A rapid and sensitive method for the quantification of microgram quatitities of protein utilizing the principle of protein-dye binding. Anal. Biochem. 72: 248–254.
  • Burton, K. S., J. F. Smith, D. A. Wood, and C. F. Thurston. 1997. Extracellular proteinases from the mycelium of the cultivated mushroom, Agaricus bisporus. Mycol. Res. 101: 1341–1347.
  • Carlisle, M. J., and S. C. Watkinson. 1994. The fungi. Academic, London. 482 pp.
  • Dass, S. B., C. G. Dorsoretz, C. A. Reddy, and H. E. Greth- lein. 1995. Extracellular proteases produced by the wood-decaying fungus Phanerocheate chrysosporium under lignolytic and non-lignolytic conditions. Arch. Microbiol. 163: 254–258.
  • Eriksson K-E. L., R. A. Blanchette, and P. Ander. 1990. Microbial and enzymatic degradation of wood and wood components. Springer Verlag, Berlin. 407 pp.
  • Eriksson, K. E., and B. Pettersson. 1988. Acid proteases from Sporotrichum pulverulentum. Meth. Enzymol. 160: 500–508.
  • Gordon, L. J., and W. W. Lilly. 1995. Quantitative analysis of Schizophyllum commune metalloprotease, ScPrB activity in SDS-Gelatin PAGE reveals differential mycelial localization of nitrogen-limitation induced autolysis. Curr. Microbiol. 30: 337–343.
  • Griffin, D. H. 1994. Fungal physiology. Wiley-Liss, New York. 458 pp.
  • Hellmich, S., and K. Schauz. 1988. Production of extracellular alkaline and neutral proteases of Ustilago maydis. Exp. Mycol. 12: 223–232.
  • Jarai, G., and F. Buxton. 1994. Nitrogen, carbon and pH regulation of extracellular acidic proteases of Aspergillus niger. Curr. Genet. 26: 238–244.
  • Kalisz, H. M., D. Moore, and D. A. Wood. 1986. Protein utilization by basidiomycete fungi. Trans. Brit. Mycol. Soc. 86: 519–525.
  • Kalisz, H. M., D. Moore, and D. A. Wood, D. A. Wood, and D. Moore. 1989. Some characteristics of extracellular proteases from Coprinus cinereus. Mycol. Res. 92:278–285.
  • Kumagai, H., M. Matsue, E. Majima, K. Tomoda, and E. Ichishima. 1981. Carboxyl proteinase from the wood deteriorating basidiomycete Pycnoporus coccineus: substrate specificity with oxidized insulin peptide B1-B16 and B15-B24, angiotensin and proangiotensin. Agric. Biol. Chem. 45: 981–985.
  • Lasure, L. L. 1980. Regulation of extracellular acid protease in Mucor miehei. Mycologia 72: 483–493.
  • Levi, M. P., and E. B. Cowling. 1969. Role of nitrogen in wood deterioration VII. Physiological adaptation of wood-destroying and other fungi to substrates deficient in nitrogen. Phytopathology 59: 460–468.
  • Lilly, W. W., R. E. Bilbrey, B. L. Williams, L. S. Loos, and D. F. Venable. 1994. Partial characterization of the cellular proteolytic system of Schizophyllum commune. Mycologia 86: 564–570.
  • Lilly, W. W., R. E. Bilbrey, B. L. Williams, L. S. Loos, and D. F. Venable, G.J. Wallweber, and S. M. Higgins. 1991. Proteolysis and amino acid recycling during nitrogen deprivation in Schizophyllum commune. Curr. Microbiol. 23: 27–32.
  • Lindberg, R. A., W. G. Rhodes, L. D. Eirich, and H. Drucker. 1982. Extracellular acid proteases from Neurospora crassa. J. Bacteriol. 150: 1103–1108.
  • Merrill, W. and E. B. Cowling. 1966. Role of nitrogen in wood deterioration: amount and distribution of nitrogen in tree stems. Canad. J. Bot. 44: 1555–1579.
  • Park, D. 1976. Carbon and nitrogen levels as factors influencing fungal decomposers. Pp. 41–59. In: The role of terrestrial and aquatic organisms in decomposition processes. Eds., J. M. Anderson and A. Macfayden. Blackwell, Oxford.
  • Sessoms, D. B., and W. W. Lilly. 1986. Derepressible proteolytic activity in homokaryotic hyphae of Schizophyllum commune. Exp. Mycol. 10: 294–300.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.