Title: Thermodynamic analysis of helix-engineered forms of the activation domain of human procarboxypeptidase A2 |
Authors: Fernández-Escamilla, Ana Mª Villegas, Virtudes Martínez, José C. van Nuland, Nico A. J. Conejero-Lara, Francisco Avilés, Francisco X. Serrano, Luis Filimonov, Vladimir V. Mateo, Pedro L. |
Editor: Wiley |
Department: Departamentos de la UMH::Bioquímica y Biología Molecular |
Issue Date: 2000 |
URI: https://hdl.handle.net/11000/39314 |
Abstract:
Thermodynamic characterization of the activation domain of human procarboxypeptidase A2, ADA2h, and its
helix-engineered mutants was carried out by differential scanning calorimetry. The mutants were engineered by
changing residues in the exposed face of the two a helices in order to increase their stability. At neutral and
alkaline pH the three mutants, a-helix 1 (M1), a-helix 2 (M2) and a-helix 1 and a-helix 2 (DM), were more
stable than the wild-type domain, in the order DM, M2, M1 and wild-type. Under these conditions the CD and
NMR spectra of all the variants are very similar, indicating that this increase in stability is not the result of gross
structural changes. Calorimetric analysis shows that the stabilizing effect of mutating the water-exposed surfaces
of the helices seems to be mainly entropic, because the mutations do not change the enthalpy or the increase in
heat capacity of denaturation. The unfolding behavior of all variants changes under acidic conditions: whereas
wild-type and M1 have a strong tendency to aggregate, giving rise to a b conformation upon unfolding, M2 and
DM unfold reversibly, M2 being more stable than DM. CD and NMR experiments at pH 3.0 suggest that a region
involving residues of the second and third b strands as well as part of a-helix 1 changes its conformation. It
seems that the enhanced stability of the altered conformation of M2 and DM reduces the aggregation tendency of
ADA2h at acidic pH.
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Keywords/Subjects: activation domain calorimetry denaturation folding stability |
Knowledge area: CDU: Ciencias puras y naturales: Biología: Biología celular y subcelular. Citología |
Type of document: info:eu-repo/semantics/article |
Access rights: info:eu-repo/semantics/closedAccess Attribution-NonCommercial-NoDerivatives 4.0 Internacional |
DOI: 10.1046/j.1432-1327.2000.01638.x. |
Published in: European Journal of Biochemistry, Vol. 267, Issue 19 (2000) pp. 5891-5899 |
Appears in Collections: Artículos - Bioquímica y Biología Molecular
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