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- W2024143595 abstract "Abstract Polymerization of actin was investigated by a microcalorimetric method at 298.15 K. The calorimetric curves showed that polymerization of actin in the presence of Mg 2+ at the concentration range 1.00–6.00 mM was an exothermic process. There was only one exothermic peak in the thermal curves under each condition. The average molar enthalpy change of actin polymerization was −0.703 kJ mol −1 . It was still exothermic in the presence of K + when the concentration was in the range 25.0–200.0 mM. The average molar enthalpy change of polymerization was −3.03 kJ mol −1 . However, the calorimetric curves contained only one exothermic peak when the K + concentration was lower, in the range 25.0–75.0 mM; there were two peaks, first exothermic and second endothermic, in the calorimetric curves as the K + concentration was higher, in the range 100.0–200.0 mM. The result not only indicated that calorimetric curves of actin polymerization changed with different concentration of K + but also showed that there were some differences between K + - and Mg 2+ -induced polymerization of actin in the presence of 0.1 mM CaCl 2 and 0.2 mM ATP. The ΔG 0 of actin polymerization in each condition was also assayed at 298.15 K and ΔS 0 in the corresponding condition were consequently evaluated from the energy-entropy relation at constant temperature and pressure." @default.
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- W2024143595 date "1998-01-01" @default.
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- W2024143595 title "Thermodynamic analysis of K+- and Mg2+-induced polymerization of actin at the temperature of 298.15 K" @default.
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- W2024143595 doi "https://doi.org/10.1016/s0040-6031(97)00331-6" @default.
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