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对与猪心NADP⁺依赖性异柠檬酸脱氢酶结合的核苷酸的构象和环境进行的¹H核磁共振研究。

1H nuclear magnetic resonance studies of the conformation and environment of nucleotides bound to pig heart NADP+-dependent isocitrate dehydrogenase.

作者信息

Ehrlich R S, Colman R F

出版信息

Biochemistry. 1985 Sep 24;24(20):5378-87. doi: 10.1021/bi00341a016.

Abstract

The binding of coenzymes, NADP+ and NADPH, and coenzyme fragments, 2'-phosphoadenosine 5'-(diphosphoribose), adenosine 2',5'-bisphosphate, and 2'-AMP, to pig heart NADP+-dependent isocitrate dehydrogenase has been studied by proton NMR. Transferred nuclear Overhauser enhancement (NOE) between the nicotinamide 1'-ribose proton and the 2-nicotinamide ring proton indicates that the nicotinamide-ribose bond assumes an anti conformation. For all nucleotides, a nuclear Overhauser effect between the adenine 1'-ribose proton and 8-adenine ring proton is observed, suggesting a predominantly syn adenine--ribose bond conformation for the enzyme-bound nucleotides. Transferred NOE between the protons at A2 and N6 is observed for NADPH (but not NADP+), implying proximity between adenine and nicotinamide rings in a folded enzyme-bound form of NADPH. Line-width measurements on the resonances of free nucleotides exchanging with bound species indicate dissociation rates ranging from less than 7 s-1 for NADPH to approximately 1600 s-1 for adenosine 2',5'-bisphosphate. Substrate, magnesium isocitrate, increases the dissociation rate for NADPH about 10-fold but decreases the corresponding rate for phosphoadenosine diphosphoribose and adenosine 2',5'-bisphosphate about 10-fold. These effects are consistent with changes in equilibrium dissociation constants measured under similar conditions. The 1H NMR spectrum of isocitrate dehydrogenase at pH 7.5 has three narrow peaks between delta 7.85 and 7.69 that shift with changes in pH and hence arise from C-4 protons of histidines. One of those, with pK = 5.35, is perturbed by NADP+ and NADPH but not by nucleotide fragments, indicating that this histidine is in the region of the nicotinamide binding site. Observation of nuclear Overhauser effects arising from selective irradiation at delta 7.55 indicates proximity of either a nontitrating histidine or an aromatic residue to the adenine ring of all nucleotides. In addition, selective irradiation of the methyl region of the enzyme spectrum demonstrates that the adenine ring is close to methyl side chains. The substrate magnesium isocitrate produces no observable differences in these protein--nucleotide interactions. The alterations in enzyme--nucleotide conformation that result in changes in affinity in the presence of substrate must involve either small shifts in the positions of amino acid side chains or changes in groups not visible in the proton NMR spectrum.

摘要

利用质子核磁共振技术研究了辅酶NADP⁺、NADPH以及辅酶片段2'-磷酸腺苷5'-(二磷酸核糖)、腺苷2',5'-二磷酸和2'-AMP与猪心NADP⁺依赖性异柠檬酸脱氢酶的结合情况。烟酰胺1'-核糖质子与2-烟酰胺环质子之间的转移核Overhauser效应(NOE)表明,烟酰胺-核糖键呈反式构象。对于所有核苷酸,观察到腺嘌呤1'-核糖质子与8-腺嘌呤环质子之间的核Overhauser效应,这表明酶结合的核苷酸中腺嘌呤-核糖键主要呈顺式构象。对于NADPH(而非NADP⁺),观察到A2和N6质子之间的转移NOE,这意味着在折叠的酶结合形式的NADPH中腺嘌呤环与烟酰胺环接近。对与结合态进行交换的游离核苷酸共振峰的线宽测量表明,解离速率范围从NADPH的小于7 s⁻¹到腺苷2',5'-二磷酸的约1600 s⁻¹。底物异柠檬酸镁使NADPH的解离速率增加约10倍,但使磷酸腺苷二磷酸核糖和腺苷2',5'-二磷酸的相应速率降低约10倍。这些效应与在相似条件下测得的平衡解离常数变化一致。pH 7.5时异柠檬酸脱氢酶的¹H NMR谱在δ 7.85至7.69之间有三个窄峰,它们随pH变化而移动,因此源于组氨酸的C-4质子。其中一个pK = 5.35的峰受到NADP⁺和NADPH的扰动,但不受核苷酸片段的扰动,这表明该组氨酸位于烟酰胺结合位点区域。在δ 7.55处选择性照射产生的核Overhauser效应的观察结果表明,一个非滴定组氨酸或一个芳香族残基与所有核苷酸的腺嘌呤环接近。此外,对酶谱甲基区域的选择性照射表明腺嘌呤环靠近甲基侧链。底物异柠檬酸镁在这些蛋白质-核苷酸相互作用中未产生可观察到的差异。在底物存在下导致亲和力变化的酶-核苷酸构象改变必定涉及氨基酸侧链位置的微小移动或质子NMR谱中不可见基团的变化。

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