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关于甲基伞形酮基半乳糖苷与四棱豆(Psophocarpus tetragonolobus)碱性凝集素结合机制的热力学和动力学研究。

Thermodynamic and kinetic studies on the mechanism of binding of methylumbelliferyl galactosides to the basic agglutinin from winged bean (Psophocarpus tetragonolobus).

作者信息

Puri K D, Khan M I, Gupta D, Surolia A

机构信息

Molecular Biophysics Unit, Indian Institute of Science, Bangalore.

出版信息

J Biol Chem. 1993 Aug 5;268(22):16378-87.

PMID:8344923
Abstract

The binding of winged bean basic agglutinin (WBA I) to 4-methylumbelliferyl (MeUmb) galactosides was examined by extrinsic fluorescence titration and stopped-flow spectrofluorimetry. Upon binding to WBA I, MeUmb alpha-galactosides show quenching in fluorescence intensity, decrease in UV absorbance with a concomitant blue shift, and decrease in fluorescence excited-state lifetimes. However, their beta-analogues show enhancement in fluorescence intensity, increase in UV absorbance with a red shift, and an increase in fluorescence excited-state lifetimes. This implies that the umbelliferyl groups of alpha- and beta-galactosides experience non-polar and polar microenvironments, respectively, upon binding to WBA I. Replacement of the anomeric hydroxyl group of galactose by 4-methylumbelliferyl moiety increases the affinity of resulting saccharides. Substitution of C-2 hydroxyl of galactose by an acetamido group leads to increased affinity due to a favorable entropy change. This suggests that acetamido group of MeUmb-alpha/beta-GalNAc binds to a relatively non-polar subsite of WBA I. Most interestingly, this substitution also reduces the association rate constants dramatically. Inspection of the activation parameters reveals that the enthalpy of activation is the limiting factor for the differences in the forward rate constants for these saccharides and the entropic contribution to the activation energy is small.

摘要

通过外在荧光滴定和停流荧光光谱法研究了四棱豆碱性凝集素(WBA I)与4-甲基伞形酮基(MeUmb)半乳糖苷的结合。与WBA I结合后,MeUmbα-半乳糖苷的荧光强度猝灭,紫外吸光度降低并伴随蓝移,荧光激发态寿命缩短。然而,它们的β-类似物的荧光强度增强,紫外吸光度增加并伴随红移,荧光激发态寿命延长。这意味着α-和β-半乳糖苷的伞形酮基在与WBA I结合后分别处于非极性和极性微环境中。用4-甲基伞形酮部分取代半乳糖的异头羟基会增加所得糖类的亲和力。用乙酰氨基取代半乳糖的C-2羟基由于有利的熵变而导致亲和力增加。这表明MeUmb-α/β-GalNAc的乙酰氨基与WBA I的一个相对非极性亚位点结合。最有趣的是,这种取代也显著降低了缔合速率常数。对活化参数的考察表明,活化焓是这些糖类正向速率常数差异的限制因素,而活化能的熵贡献很小。

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