Thermodynamics and molecular dynamics simulations of calcium binding to the regulatory site of human cardiac troponin C: evidence for communication with the structural calcium binding sites
Human cardiac troponin C (HcTnC), a member of the EF hand family of proteins, is a calcium sensor responsible for initiating contraction of the myocardium. Ca 2+ binding to the regulatory domain induces a slight change in HcTnC conformation which modifies subsequent interactions in the troponin–trop...
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Veröffentlicht in: | Journal of biological inorganic chemistry 2013, Vol.18 (1), p.49-58 |
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Sprache: | eng |
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Zusammenfassung: | Human cardiac troponin C (HcTnC), a member of the EF hand family of proteins, is a calcium sensor responsible for initiating contraction of the myocardium. Ca
2+
binding to the regulatory domain induces a slight change in HcTnC conformation which modifies subsequent interactions in the troponin–tropomyosin–actin complex. Herein, we report a calorimetric study of Ca
2+
binding to HcTnC. Isotherms obtained at 25 °C (10 mM 2-morpholinoethanesulfonic acid, 50 mM KCl, pH 7.0) provided thermodynamic parameters for Ca
2+
binding to both the high-affinity and the low-affinity domain of HcTnC. Ca
2+
binding to the N-domain was shown to be endothermic in 2-morpholinoethanesulfonic acid buffer and allowed us to extract the thermodynamics of Ca
2+
binding to the regulatory domain. This pattern stems from changes that occur at the Ca
2+
site rather than structural changes of the protein. Molecular dynamics simulations performed on apo and calcium-bound HcTnC
1–89
support this claim. The values of the Gibbs free energy for Ca
2+
binding to the N-domain in the full-length protein and to the isolated domain (HcTnC
1–89
) are similar; however, differences in the entropic and enthalpic contributions to the free energy provide supporting evidence for the cooperativity of the C-domain and the N-domain. Thermograms obtained at two additional temperatures (10 and 37 °C) revealed interesting trends in the enthalpies and entropies of binding for both thermodynamic events. This allowed the determination of the change in heat capacity (∆
C
p
) from a plot of ∆
H
verses temperature and may provide evidence for positive cooperativity of Ca
2+
binding to the C-domain. |
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ISSN: | 0949-8257 1432-1327 |
DOI: | 10.1007/s00775-012-0948-2 |