Interaction of acid phosphatase with clays, organic molecules and organo-mineral complexes: kinetics and stability

Citation
Ma. Rao et al., Interaction of acid phosphatase with clays, organic molecules and organo-mineral complexes: kinetics and stability, SOIL BIOL B, 32(7), 2000, pp. 1007-1014
Citations number
26
Categorie Soggetti
Environment/Ecology
Journal title
SOIL BIOLOGY & BIOCHEMISTRY
ISSN journal
00380717 → ACNP
Volume
32
Issue
7
Year of publication
2000
Pages
1007 - 1014
Database
ISI
SICI code
0038-0717(200007)32:7<1007:IOAPWC>2.0.ZU;2-3
Abstract
The properties of synthetic active enzymatic complexes, simulating those us ually present in soil environment, were investigated. Complexes were formed by the interaction of acid phosphatase with clays (montmorillonite and Al hydroxide), tannic acid and organo-mineral aggregates, obtained by mixing t annate, OH-Al species and/or montmorillonite. Immobilized acid phosphatase showed catalytic features quite different from those of the free enzyme. Th e presence of OH-Al species in the matrix generally resulted in an improvem ent of some enzymatic properties. A gain in activity of about 45 and 55% wa s observed for the complexes acid phosphatase-tannate-OH-Al species after t hermal deactivation at 60 degrees C and 2 h of exposure to proteinase K. Hi gh residual activities ranging from 17 to 61% and from 28 to 57% of the ini tial one were measured for complexes of the enzyme with inorganic and organ ic/organo-mineral matrices, respectively. In contrast, the association with a pure constituent such as montmorillonite and/or tannic acid gave rise to an immobilized enzyme, displaying a completely different catalytic behavio ur. Compared to the free enzyme, acid phosphatase-montmorillonite and acid phosphatase-tannate complexes had a different pH-activity dependence and a higher and lower sensitivity to temperature and proteolysis, respectively. (C) 2000 Elsevier Science Ltd. All rights reserved.