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Molecular mechanisms for the conversion of zymogens to active proteolytic enzymes

Protein Science · 1998 · Vol. 7(4) · pp. 815–836
Amir R. KhanMicael N. G. James

Abstract

Proteolytic enzymes are synthesized as inactive precursors, or "zymogens," to prevent unwanted protein degradation, and to enable spatial and temporal regulation of proteolytic activity. Upon sorting or appropriate compartmentalization, zymogen conversion to the active enzyme typically involves limited proteolysis and removal of an "activation segment." The sizes of activation segments range from dipeptide units to independently folding domains comprising more than 100 residues. A common form of the activation segment is an N-terminal extension of the mature enzyme, or "prosegment," that sterically blocks the active site, and thereby prevents binding of substrates. In addition to their inhibitory role, prosegments are frequently important for the folding, stability, and/or intracellular sorting of the zymogen. The mechanisms of conversion to active enzymes are diverse in nature, ranging from enzymatic or nonenzymatic cofactors that trigger activation, to a simple change in pH that results in conversion by an autocatalytic mechanism. Recent X-ray crystallographic studies of zymogens and comparisons with their active counterparts have identified the structural changes that accompany conversion. This review will focus upon the structural basis for inhibition by activation segments, as well as the molecular events that lead to the conversion of zymogens to active enzymes.

Peptidase Inhibition and AnalysisUbiquitin and proteasome pathwaysSignaling Pathways in DiseaseZymogenChemistryActive siteProteolysisBiochemistryEnzymeFolding (DSP implementation)Enzyme activatorProteolytic enzymesProtein folding

MeSH terms

Amino Acid SequenceBinding SitesEnzyme ActivationEnzyme PrecursorsModels, MolecularMolecular Sequence DataEndopeptidasesProtein ConformationProtein PrecursorsCrystallography, X-Ray
Citations
468
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12.16
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References
On the size of the active site in proteases. I. Papain
Biochemical and Biophysical Research Communications · 1967 · 5,205 citations
Natural protein proteinase inhibitors and their interaction with proteinases
European Journal of Biochemistry · 1992 · 1,040 citations
Protein Inhibitors of Proteinases
Annual Review of Biochemistry · 1980 · 2,242 citations
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