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利用转移核Overhauser效应测量来比较辅酶类似物与二氢叶酸还原酶的结合情况。

Use of transferred nuclear Overhauser effect measurements to compare binding of coenzyme analogues to dihydrofolate reductase.

作者信息

Feeney J, Birdsall B, Roberts G C, Burgen A S

出版信息

Biochemistry. 1983 Feb 1;22(3):628-33. doi: 10.1021/bi00272a016.

Abstract

Transferred nuclear Overhauser effect measurements have been made on complexes of NADP+ and thioNADP+ with Lactobacillus casei dihydrofolate reductase to provide information about the glycosidic bond conformations in these complexes. Both NADP+ and thioNADP+ are shown to have very similar anti conformations about their adenine glycosidic bonds when bound to the enzyme. However, their nicotinamide glycosidic bond conformations are very different: while NADP+ binds in an exclusively anti conformation, thioNADP+ binds with a distribution of syn/anti conformations very similar to that observed in nicotinamide mononucleotides in free solution (approximately 50:50). Thus for thioNADP+, binding to the enzyme does not significantly perturb the potential function for rotation about the nicotinamide glycosidic bond. Earlier NMR studies [Hyde, E. I., Birdsall, B., Roberts, G. C. K., Feeney, J., & Burgen, A. S. V. (1980) Biochemistry 19, 3738] had indicated that large downfield 1H shifts of the nicotinamide ring protons (0.61-1.36 ppm) are detected on binding NADP+ while only very small shifts (less than 0.1 ppm) are observed in complexes with thioNADP+. The chemical shift and conformational findings are best explained if the thionicotinamide ring extends into solution making essentially no contacts with the enzyme.

摘要

已对烟酰胺腺嘌呤二核苷酸磷酸(NADP⁺)和硫代烟酰胺腺嘌呤二核苷酸磷酸(thioNADP⁺)与干酪乳杆菌二氢叶酸还原酶的复合物进行了转移核Overhauser效应测量,以获取有关这些复合物中糖苷键构象的信息。结果表明,NADP⁺和thioNADP⁺与酶结合时,其腺嘌呤糖苷键均具有非常相似的反式构象。然而,它们的烟酰胺糖苷键构象却非常不同:NADP⁺仅以反式构象结合,而thioNADP⁺结合时的顺式/反式构象分布与游离溶液中烟酰胺单核苷酸的构象分布非常相似(约为50:50)。因此,对于thioNADP⁺而言,与酶的结合不会显著干扰围绕烟酰胺糖苷键旋转的潜在功能。早期的核磁共振研究[Hyde, E. I., Birdsall, B., Roberts, G. C. K., Feeney, J., & Burgen, A. S. V. (1980) Biochemistry 19, 3738]表明,结合NADP⁺时可检测到烟酰胺环质子有较大的向低场位移(0.61 - 1.36 ppm),而与thioNADP⁺形成的复合物中仅观察到非常小的位移(小于0.1 ppm)。如果硫代烟酰胺环延伸到溶液中且基本上不与酶接触,那么化学位移和构象研究结果就能得到最好的解释。

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