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Updated: Aug 16, 2026

A Method to Study the C924T Polymorphism of the Thromboxane A2 Receptor Gene
Published on: April 1, 2019
Polymorphisms A387P in thrombospondin-4 and N700S in thrombospondin-1 perturb calcium binding sites
Olga I Stenina1, Valentin Ustinov, Irene Krukovets
1Department of Molecular Cardiology, Joseph J. Jacobs Center for Thrombosis, Cleveland Clinic Foundation, Cleveland, Ohio 44195, USA. stenino@ccf.org
Insights
Genetic variations in thrombospondin (TSP) proteins linked to cardiovascular disease alter calcium binding. TSP-1 polymorphism decreases calcium affinity, while TSP-4 gains a binding site, impacting heart function uniquely.
Area of Science:
- Biochemistry
- Genetics
- Cardiovascular Research
Background:
- Genetic studies link thrombospondin (TSP) gene family members to premature cardiovascular disease.
- Specific polymorphisms, A387P in TSP-4 and N700S in TSP-1, cause single amino acid changes in homologous protein domains.
Purpose of the Study:
- To investigate if these disease-associated polymorphisms alter calcium (Ca2+) binding properties.
- To determine the functional consequences of altered Ca2+ binding in TSP-1 and TSP-4 variants.
Main Methods:
- Utilized synthetic peptides and purified recombinant protein fragments with specific amino acid substitutions.
- Measured Ca2+ binding differences using terbium (Tb3+) luminescence as an indicator.
- Calculated binding constants for wild-type and variant TSP-1 and TSP-4 fragments.
Main Results:
- TSP-1 N700S polymorphism reduced Ca2+ binding affinity by 3.5-fold in peptides and 10-fold in protein fragments.
- TSP-4 A387P polymorphism resulted in the acquisition of an additional Ca2+ binding site.
- The two substitutions exhibited opposing effects on Ca2+ binding: decreased for TSP-1 and increased for TSP-4.
Conclusions:
- Both A387P (TSP-4) and N700S (TSP-1) substitutions significantly alter Ca2+ binding characteristics.
- The distinct alterations in Ca2+ binding by TSP variants suggest divergent pathogenic mechanisms in cardiovascular disease.
Abstract:
Recent genetic studies have associated members of the thrombospondin (TSP) gene family with premature cardiovascular disease. The disease-associated polymorphisms lead to single amino acid changes in TSP-4 (A387P) and TSP-1 (N700S). These substitutions reside in adjacent domains of these highly homologous proteins. Secondary structural predictive programs and the homology of the domains harboring these amino acid substitutions to those in other proteins pointed to potential alterations of putative Ca2+ binding sites that reside in close proximity to the polymorphic amino acids. Since Ca2+ binding is critical for the structure and function of TSP family members, direct evidence for differences in Ca2+ binding by the polymorphic forms was sought. Using synthetic peptides and purified recombinant variant fragments bearing the amino acid substitutions, we measured differences in Tb3+ luminescence as an index of Ca2+ binding. The Tb3+ binding constants placed the TSP-1 region affected by N700S polymorphism among other high-affinity Ca2+ binding sites. The affinity of Ca2+ binding was lower for peptides (3.5-fold) and recombinant fragments (10-fold) containing the S700 vs. the N700 form. In TSP-4, the P387 form acquired an additional Ca2+ binding site absent in the A387 form. The results of our study suggest that both substitutions (A387P in TSP-4 and N700S in TSP-1) alter Ca2+ binding properties. Since these substitutions exert the opposite effects on Ca2+ binding, a decrease in TSP-1 and an increase in TSP-4, the two TSP variants are likely to influence cardiovascular functions in distinct but yet pathogenic ways.
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