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Role of mutation Y6F on the binding properties of Schistosoma japonicum glutathione S-transferase. | LitMetric

Role of mutation Y6F on the binding properties of Schistosoma japonicum glutathione S-transferase.

Int J Biol Macromol

Dpto. de Química Física, Bioquímica y Q. Inorgánica, Facultad de Ciencias Experimentales, Universidad de Almería, La Cañada de San Urbano, Spain.

Published: September 2003

AI Article Synopsis

  • The study investigates how the hydroxyl group of tyrosine 6 affects the binding of glutathione S-transferase from Schistosoma japonicum, focusing on a mutant (Y6F) where tyrosine is replaced by phenylalanine.
  • The Y6F mutant exhibits negative cooperativity when binding to reduced glutathione (GSH), with calorimetric data suggesting that its binding is mainly driven by enthalpy across a range of temperatures.
  • Measurements show that proton uptake occurs during GSH binding, and the binding enthalpy significantly varies with temperature, indicating conformational changes at different binding sites.

Article Abstract

The role of the hydroxyl group of tyrosine 6 in the binding of Schistosoma japonicum glutathione S-transferase has been investigated by isothermal titration calorimetry (ITC). A site-specific replacement of this residue with phenylalanine produces the Y6F mutant, which shows negative cooperativity for the binding of reduced glutathione (GSH). Calorimetric measurements indicated that the binding of GSH to Y6F dimer is enthalpically driven over the temperature range investigated. A concomitant net uptake of protons upon binding of GSH to Y6F mutant was detected carrying out calorimetric experiments in various buffer systems with different heats of ionization. The entropy change is favorable at temperatures below 26 degrees C for the first site, being entropically favorable at all temperatures studied for the second site. The enthalpy change of binding is strongly temperature-dependent, arising from a large negative DeltaC(o) (p1)=-3.45+/-0.62kJK(-1)mol(-1) for the first site, whereas a small DeltaC(o) (p2)=-0.33+/-0.05kJK(-1)mol(-1) for the second site was obtained. This large heat capacity change is indicative of conformational changes during the binding of substrate.

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Source
http://dx.doi.org/10.1016/s0141-8130(03)00039-4DOI Listing

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