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对NodST催化的混合随机乒乓机制的观察:一种质谱方法。

Observation of a hybrid random ping-pong mechanism of catalysis for NodST: a mass spectrometry approach.

作者信息

Pi Na, Yu Yonghao, Mougous Joseph D, Leary Julie A

机构信息

Department of Chemistry, University of California, Berkeley, CA 94720, USA.

出版信息

Protein Sci. 2004 Apr;13(4):903-12. doi: 10.1110/ps.03581904.

Abstract

An efficient enzyme kinetics assay using electrospray ionization mass spectrometry (ESI-MS) was initially applied to the catalytic mechanism investigation of a carbohydrate sulfotransferase, NodST. Herein, the recombinant NodST was overexpressed with a His(6)-tag and purified via Ni-NTA metal-affinity chromatography. In this bisubstrate enzymatic system, an internal standard similar in structure and ionization efficiency to the product was chosen in the ESI-MS assay, and a single point normalization factor was determined and used to quantify the product concentration. The catalytic mechanism of NodST was rapidly determined by fitting the MS kinetic data into a nonlinear regression analysis program. The initial rate kinetics analysis and product inhibition study described support a hybrid double-displacement, two-site ping-pong mechanism of NodST with formation of a sulfated NodST intermediate. This covalent intermediate was further isolated and detected via trypsin digestion and Fourier transform ion cyclotron resonance mass spectrometry. To our knowledge, these are the first mechanistic data reported for the bacterial sulfotransferase, NodST, which demonstrated the power of mass spectrometry in elucidating the reaction pathway and catalytic mechanism of promising enzymatic systems.

摘要

一种使用电喷雾电离质谱(ESI-MS)的高效酶动力学分析方法最初被应用于碳水化合物磺基转移酶NodST的催化机制研究。在此,重组NodST以His(6)标签进行过表达,并通过Ni-NTA金属亲和色谱法进行纯化。在这个双底物酶系统中,在ESI-MS分析中选择了一种结构和电离效率与产物相似的内标,并确定了一个单点归一化因子用于定量产物浓度。通过将MS动力学数据拟合到非线性回归分析程序中,快速确定了NodST的催化机制。所描述的初始速率动力学分析和产物抑制研究支持了NodST的混合双置换、双位点乒乓机制以及硫酸化NodST中间体的形成。这种共价中间体通过胰蛋白酶消化和傅里叶变换离子回旋共振质谱进一步分离和检测。据我们所知,这些是关于细菌磺基转移酶NodST报道的首批机制数据,证明了质谱在阐明有前景的酶系统的反应途径和催化机制方面的强大作用。

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