首页> 外文期刊>Journal of Inorganic Biochemistry: An Interdisciplinary Journal >Interaction of folic acid and some matrix metalloproteinase (MMP) inhibitor folate-γ-hydroxamate derivatives with Zn(II) and human serum albumin
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Interaction of folic acid and some matrix metalloproteinase (MMP) inhibitor folate-γ-hydroxamate derivatives with Zn(II) and human serum albumin

机译:叶酸和某些基质金属蛋白酶(MMP)抑制剂叶酸-γ-异羟肟酸酯衍生物与锌(II)和人血清白蛋白的相互作用

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摘要

Human serum albumin binding of folic acid and its γ-hydroxamate/ carboxylate derivatives was studied by ultrafiltration and spectrofluorimetry, and it was found that the ligands exhibit a moderate binding (KD ~ 2-50 μM), and the folate-γ-phenylalanine represents the highest conditional binding constant towards albumin. This feature may have importance in the serum transport processes of these ligands. Interaction of folic acid and its derivatives with Zn(II) was investigated in aqueous solution to obtain the composition and stabilities of the complexes by the means of pH-potentiometry, 1H NMR and electrospray ionization mass spectrometry, together with the characterization of the proton dissociation processes and the hydro-lipophilic properties of the ligands. The formation of mono-ligand complexes was demonstrated in all cases and the contribution of the glutamyl carboxylates to the coordination was excluded. Binding of folic acid and its γ-carboxylate derivatives to Zn(II) via the pteridine moiety is suggested, while the (O,O) coordination fashion of the folate-γ-hydroxamate ligands has importance in their inhibitory activity against Zn(II)-containing matrix metalloproteinases. It was found that the enzyme inhibition of these folate-γ-hydroxamate ligands is mainly tuned by other features, such as the lipophilic character rather than the Zn(II)-chelate stability.
机译:通过超滤和荧光光谱法研究了人血清中叶酸及其γ-异羟肟酸酯/羧酸酯衍生物的结合,发现该配体具有中等结合力(KD〜2-50μM),而叶酸-γ-苯丙氨酸代表对白蛋白的最高条件结合常数。该特征在这些配体的血清转运过程中可能具有重要性。研究了叶酸及其衍生物与Zn(II)在水溶液中的相互作用,通过pH-电位法,1H NMR和电喷雾电离质谱法以及质子解离的表征获得了配合物的组成和稳定性。的过程和配体的亲脂性。在所有情况下均证明了单配体络合物的形成,并且排除了谷氨酰羧酸盐对配位的贡献。叶酸及其γ-羧酸盐衍生物通过蝶啶部分与Zn(II)结合,而叶酸-γ-异羟肟酸酯配体的(O,O)配位方式在其对Zn(II)的抑制活性中很重要含基质金属蛋白酶。已发现这些叶酸-γ-异羟肟酸酯配体的酶抑制作用主要受其他特征调节,例如亲脂性而不是Zn(II)-螯合物稳定性。

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