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首页> 外文期刊>Biochemistry >Thermodynamics of binding of heterobidentate ligands consisting of spacer-connected acarbose and beta-cyclodextrin to the catalytic and starch-binding domains of glucoamylase from Aspergillus niger shows that the catalytic and starch-binding sites ar
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Thermodynamics of binding of heterobidentate ligands consisting of spacer-connected acarbose and beta-cyclodextrin to the catalytic and starch-binding domains of glucoamylase from Aspergillus niger shows that the catalytic and starch-binding sites ar

机译:由间隔连接的阿卡波糖和β-环糊精组成的异双齿配体与黑曲霉葡糖淀粉酶的催化和淀粉结合域结合的热力学表明,催化和淀粉结合位点

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The binding to glucoamylase 1 from Aspergillus niger (GA1) of a series of four synthetic heterobidentate ligands of acarbose and beta-cyclodextrin (beta-CD) linked together has been studied by isothermal titration calorimetry. GA1 consists of a catalytic and a starch-binding domain (SBD) connected by a heavily O-glycosylated linker region. Acarbose is a strong inhibitor of glucoamylase and binds exclusively in the catalytic site, while the cyclic starch mimic beta-CD binds exclusively to the two sites of SBD. No spacer or spacer arms of 14, 36, and 73 Angstrom in their extended conformations connect acarbose and beta-CD These compounds were used as probes for bidentate ligand binding to both domains in order to estimate the distance between the catalytic site and the SBD binding site in solution. Delta H of binding of the four heterobidentate ligands is within experimental uncertainty equal to the sum of Delta H of binding of free acarbose and beta-CD, indicating ligand binding to both domains. However, the binding constants are 4-5 orders of magnitude smaller than for the binding of acarbose (K approximate to 10(12) M-1), increasing with spacer length from 2 x 10(7) M-1 for no spacer to 1 x 10(8) M-1 for the 73 Angstrom spacer, Subsequent titrations with beta-CD of the glucoamylase-bidentate ligand complexes revealed that only one of the two binding sites of SBD was vacant. Further titrations with acarbose to these mixtures showed complete displacement of the acarbose moiety of the bidentate ligands from the catalytic sites. These experiments show that the bidentate ligands bind to both the catalytic domain and SBD. The weakening of the bidentate ligand binding compared to acarbose is a purely entropic effect point to steric hindrance between SBD and the beta-CD moiety. To test this, titrations of glucoamylase 2, a form containing the catalytic domain and the linker region but lacking SBD, with the bidentate ligands were carried out. The results were indistinguishable from the binding of free acarbose. Thus, the reduced affinity of the bidentate ligands observed with GA1 stems from interactions due to SBD. The results show that the catalytic and starch-binding sites are in close proximity in solution and thus indicate considerable flexibility of the linker region. [References: 41]
机译:通过等温滴定热法研究了一系列连接在一起的阿卡波糖和β-环糊精(β-CD)的四个合成异双齿配体与黑曲霉(GA1)的葡糖淀粉酶1的结合。 GA1由一个催化和一个淀粉结合结构域(SBD)组成,该结构域通过一个严重的O-糖基化接头区域连接。阿卡波糖是强力的葡糖淀粉酶抑制剂,仅在催化位点结合,而环状淀粉模拟β-CD仅与SBD的两个位点结合。在扩展构象中没有间隔为14,36和73埃的间隔子或间隔臂连接阿卡波糖和β-CD。这些化合物被用作双齿配体与两个结构域结合的探针,以估计催化位点与SBD结合之间的距离解决方案中的站点。四个异双齿配体结合的ΔH在实验不确定性内等于游离阿卡波糖和β-CD结合的ΔH之和,表明配体结合到两个结构域。但是,结合常数比阿卡波糖的结合常数小4-5个数量级(K大约为10(12)M-1),随着间隔物长度的增加,间隔物从2 x 10(7)M-1增加,而没有间隔物。 1 x 10(8)M-1用于73埃间隔子,随后用β-CD滴定葡糖淀粉酶-双齿配体络合物,发现SBD的两个结合位点中只有一个是空的。用阿卡波糖对这些混合物进行进一步滴定表明二齿配体的阿卡波糖部分完全从催化位点移出。这些实验表明双齿配体与催化结构域和SBD结合。与阿卡波糖相比,双齿配体结合的减弱是纯熵作用,指向SBD和β-CD部分之间的空间位阻。为了测试这一点,用二齿配体滴定了葡糖淀粉酶2,一种含有催化结构域和接头区域但缺乏SBD的形式。结果与游离阿卡波糖的结合没有区别。因此,观察到的与GA1的双齿配体的亲和力降低是由于SBD引起的相互作用。结果表明,催化和淀粉结合位点在溶液中非常接近,因此表明接头区域具有相当大的柔性。 [参考:41]

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