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天冬氨酸转氨甲酰酶中催化亚基与调节亚基之间通讯的19F核磁共振研究。

19F nuclear magnetic resonance studies of communication between catalytic and regulatory subunits in aspartate transcarbamoylase.

作者信息

Wacks D B, Schachman H K

出版信息

J Biol Chem. 1985 Sep 25;260(21):11659-62.

PMID:4044575
Abstract

19F nuclear magnetic resonance (NMR) spectroscopy was used to study "communication" between the catalytic and regulatory subunits in aspartate transcarbamoylase of Escherichia coli. Hybrid enzymes composed of fluorotyrosine-labeled regulatory subunits and native catalytic subunits or of native regulatory subunits and fluorotyrosine-labeled catalytic subunits were constructed and shown to have the allosteric kinetic properties of native enzyme. These hybrids exhibited the ligand-promoted "global" conformational changes characteristic of native aspartate transcarbamoylase and alterations in the NMR spectrum when ligands bind to the active site. The NMR difference spectrum caused by the binding of the bisubstrate analog N-(phosphonacetyl)-L-aspartate to the hybrid containing 19F-labeled regulatory chains consisted of two troughs and a peak, suggesting that two tyrosines in the regulatory polypeptide chains were affected by the binding of ligand to the catalytic subunits. The increase in magnitude of the peak appeared to depend directly on the fractional saturation of the active sites. A peak with two distinct shoulders was observed in the 19F NMR spectrum of the hybrid containing fluorotyrosine in the catalytic chains when it was saturated with the ligand, whereas the spectrum for the unliganded enzyme consisted of a single peak. The NMR difference spectrum showed that the bisubstrate ligand perturbed at least two resonances, and these changes appeared to be tightly linked to the binding of the ligand.

摘要

利用19F核磁共振(NMR)光谱研究了大肠杆菌天冬氨酸转氨甲酰酶催化亚基与调节亚基之间的“通信”。构建了由氟酪氨酸标记的调节亚基和天然催化亚基组成的杂合酶,以及由天然调节亚基和氟酪氨酸标记的催化亚基组成的杂合酶,结果表明它们具有天然酶的别构动力学性质。这些杂合体表现出天然天冬氨酸转氨甲酰酶特有的配体促进的“全局”构象变化,以及当配体结合到活性位点时NMR光谱的改变。双底物类似物N-(膦酰乙酰基)-L-天冬氨酸与含有19F标记调节链的杂合体结合所引起的NMR差异光谱由两个谷和一个峰组成,这表明调节多肽链中的两个酪氨酸受到配体与催化亚基结合的影响。峰强度的增加似乎直接取决于活性位点的饱和分数。当含有氟酪氨酸的催化链杂合体被配体饱和时,在其19F NMR光谱中观察到一个有两个明显肩峰的峰,而未结合配体的酶的光谱由一个单峰组成。NMR差异光谱表明双底物配体至少干扰了两个共振,并且这些变化似乎与配体的结合紧密相关。

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