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G M Brenckle

Publications and source records attributed to G M Brenckle.

4 recordsLinked to original sources

Evidence for self-association of prothrombin fragment 1 in the absence of calcium ions. Implications for the interpretation of cooperativity of calcium binding.

Sedimentation equilibrium studies have demonstrated that prothrombin fragment 1 from either human or bovine plasma reversibly dimerizes in the absence of Ca2+ with an equilibrium constant of 1,000 M-1. In the presence of 10 mM Ca2+ this association constant increased to 10,000 M-1. A model for preferential binding of Ca2+ to the pre-existing dimer has been found capable of accounting quantitatively for the cooperative Ca2+ binding to this prothrombin fragment, and for the dependence of its sedimentation coefficient on protein concentration in the presence and absence of metal ion. Sedimentation equilibrium studies of intact bovine and human prothrombins have confirmed previous reports that these prothrombins dimerize. For both prothrombins the association constant is 10,000 M-1, both in the absence and presence of Ca2+.

Animals↗

Calcium ion-protein interactions in prothrombin activation.

1. The protein concentration dependence observed in the calcium binding to fragment 1 indicates that calcium-mediated dimerization is responsible for the cooperative calcium binding behavior usually observed. "Unusual" fragment 1, which exhibits negative cooperativity (the type of binding behavior expected for ions interacting with a charged protein) at high concentration, also exhibit altered self-association behavior. 2. The calcium-induced spectral perturbations that are observed by fluorescence and ultraviolet difference spectroscopy are influenced by calcium-mediated dimerization. Similar spectral perturbations may also be induced by other divalent, trivalent, and monovalent ions, as well as changes in pH. Because this is a multi-site system, only limited interpretation of the spectral data is possible without calcium binding data. 3. Although strong side chain CD signals make estimation of fragment 1 secondary structure ambiguous, the CD data do indicate small changes in structure during calcium binding. Similar changes are observed upon addition of monovalent ions at high concentration or after lowering the pH. No coupling between changes in conformation and the cooperative calcium binding behavior has yet been observed to exist.

Binding Sites↗