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与28万道尔顿蛋白质——胆色素原合酶结合的底物中亚甲基和次甲基碳的13C核磁共振研究。

13C NMR studies of methylene and methine carbons of substrate bound to a 280,000-dalton protein, porphobilinogen synthase.

作者信息

Jaffe E K, Markham G D

机构信息

Department of Biochemistry, University of Pennsylvania School of Dental Medicine, Philadelphia 19104-6002.

出版信息

Biochemistry. 1988 Jun 14;27(12):4475-81. doi: 10.1021/bi00412a039.

Abstract

13C NMR has been used to observe the equilibrium complex of [5,5-2H,5-13C]-5-aminolevulinate [( 5,5-2H,5-13C]ALA) bound to porphobilinogen (PBG) synthase (5-aminolevulinate dehydratase), a 280,000-dalton protein. [5,5-2H,5-13C]ALA (chemical shift 46.9 ppm in D2O) was prepared from [5-13C]ALA through enolization in deuteriated neutral potassium phosphate buffer. In the PBG synthase reaction [5,5-2H,5-13C]ALA forms [2,11,11-2H,2,11-13C]PBG (chemical shifts 116.2 ppm for C2 and 34.2 ppm for C11 in D2O). For the complex formed between [5,5-2H,5-13C]ALA and methyl methanethiosulfonate (MMTS) modified PBG synthase, which does not catalyze PBG formation but can form a Schiff base adduct, the chemical shift of 44.2 ppm (line width 92 Hz) identifies an imine structure as the predominant tautomeric form of the Schiff base. By comparison to model compounds, the stereochemistry of the imine has been deduced; however, the protonation state of the imine nitrogen remains unresolved. Reconstitution of the MMTS-modified enzyme-Schiff base complex with Zn(II) and 2-mercaptoethanol results in the holoenzyme-bound equilibrium complex; this complex contains predominantly enzyme-bound PBG, and spectra reveal two peaks from bound PBG and two from free PBG. For bound PBG, C2 is -2.8 ppm from the free signal and C11 is +2.6 ppm from the free signal; the line widths of the bound signals are 55 and 75 Hz, respectively.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

13C核磁共振已被用于观察[5,5-2H,5-13C]-5-氨基乙酰丙酸[(5,5-2H,5-13C)ALA]与胆色素原(PBG)合酶(5-氨基乙酰丙酸脱水酶,一种280,000道尔顿的蛋白质)结合形成的平衡复合物。[5,5-2H,5-13C]ALA(在D2O中的化学位移为46.9 ppm)由[5-13C]ALA在氘代中性磷酸钾缓冲液中通过烯醇化反应制备。在PBG合酶反应中,[5,5-2H,5-13C]ALA形成[2,11,11-2H,2,11-13C]PBG(在D2O中,C2的化学位移为116.2 ppm,C11的化学位移为34.2 ppm)。对于[5,5-2H,5-13C]ALA与甲硫基磺酸甲酯(MMTS)修饰的PBG合酶形成的复合物,该复合物不催化PBG的形成,但能形成席夫碱加合物,其化学位移为44.2 ppm(线宽92 Hz),表明亚胺结构是席夫碱的主要互变异构形式。通过与模型化合物比较,已推断出亚胺的立体化学;然而,亚胺氮的质子化状态仍未解决。用Zn(II)和2-巯基乙醇重构MMTS修饰的酶-席夫碱复合物可得到全酶结合的平衡复合物;该复合物主要包含酶结合的PBG,光谱显示出两个来自结合PBG的峰和两个来自游离PBG的峰。对于结合的PBG,C2相对于游离信号为-2.8 ppm,C11相对于游离信号为+2.6 ppm;结合信号的线宽分别为55和75 Hz。(摘要截短于250字)

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