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Implications of the ligandin binding site on the binding of non-substrate ligands to Schistosoma japonicum-glutathione transferase

✍ Scribed by Zeyad Yassin; Emilia Ortiz-Salmerón; Federico Garcı́a-Maroto; Carmen Barón; Luis Garcı́a-Fuentes


Book ID
104003281
Publisher
Elsevier Science
Year
2004
Tongue
English
Weight
532 KB
Volume
1698
Category
Article
ISSN
1570-9639

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✦ Synopsis


The binding interactions between dimeric glutathione transferase from Schistosoma japonicum (Sj26GST) and bromosulfophthalein (BS) or 8-anilino-1-naphthalene sulfonate (ANS) were characterised by fluorescence spectroscopy and isothermal titration calorimetry (ITC). Both ligands inhibit the enzymatic activity of Sj26GST in a non-competitive form. A stoichiometry of 1 molecule of ligand per mole of dimeric enzyme was obtained for the binding of these ligands. The affinity of BS is higher (K d = 3.2 AM) than that for ANS (K d = 195 AM). The thermodynamic parameters obtained by calorimetric titrations are pH-independent in the range of 5.5 to 7.5. The interaction process is enthalpically driven at all the studied temperatures. This enthalpic contribution is larger for the ANS anion than for BS. The strongly favourable enthalpic contribution for the binding of ANS to Sj26GST is compensated by a negative entropy change, due to enthalpy-entropy compensation. DGj remains almost invariant over the temperature range studied. The free energy change for the binding of BS to Sj26GST is also favoured by entropic contributions at temperatures below 32 jC, thus indicating a strong hydrophobic interaction. Heat capacity change obtained for BS (DC p j=( À 580.3 F 54.2) calÁK À 1 mol À 1 ) is twofold larger (in absolute value) than for ANS (DC p j=( À 294.8 F 15.8) calÁK À 1 mol À 1 ). Taking together the thermodynamic parameters obtained for these inhibitors, it can be argued that the possible hydrophobic interactions in the binding of these inhibitors to L-site must be accompanied by other interactions whose contribution is enthalpic. Therefore, the non-substrate binding site (designed as ligandin) on Sj26GST may not be fully hydrophobic.


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