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.

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