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磷酸吡哆醛在糖原磷酸化酶中的作用:用6-氟吡哆醛和6-氟磷酸吡哆醛重构的磷酸化酶的19F核磁共振及动力学研究

Function of pyridoxal 5'-phosphate in glycogen phosphorylase: 19F NMR and kinetic studies of phosphorylase reconstituted with 6-fluoropyridoxal and 6-fluoropyridoxal phosphate.

作者信息

Chang Y C, Scott R D, Graves D J

出版信息

Biochemistry. 1986 Apr 22;25(8):1932-9. doi: 10.1021/bi00356a015.

Abstract

19F NMR spectroscopic properties of glycogen phosphorylase reconstituted with 6-fluoropyridoxal (6-FPAL) and 6-fluoropyridoxal phosphate (6-FPLP) were investigated. Analysis of the contribution of chemical shift anisotropy to the line width of the 6-FPLP-enzyme signal shows that the coenzyme molecule is tightly bound to the protein. The chemical shift of the fluorine nucleus in the free 6-FPLP protein is pH independent from pH 6 to pH 9.1. When the 6-FPLP-enzyme forms complexes with AMP, AMP plus glucose-1-P, and AMP plus inorganic phosphate, signals at -11.0, -13.1, and -10.4 ppm are observed, respectively. These different chemical shifts indicate that the protein in each complex has a distinct conformation. The exchange rate between the 6-FPLP-protein-AMP complex and the same complex with bound glucose-1-P is estimated to be 3300 +/- 700 s-1, and that between the 6-FPLP-protein-AMP complex and with bound inorganic phosphate is 500 +/- 100 s-1. The former exchange rate is 13 times faster than that of the same process for the 6-FPAL-enzyme. Analysis of the effects of temperature on the 19F line shape of the 6-FPLP enzyme in the presence of ligands shows that the exchange rates between different complexes drop significantly between 20 and 10 degrees C. Within this temperature range, Arrhenius plots of the enzymatic activities of the native and 6-FPLP-enzymes at varied temperatures also show a pronounced curvature.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

研究了用6-氟吡哆醛(6-FPAL)和6-氟磷酸吡哆醛(6-FPLP)重构的糖原磷酸化酶的19F核磁共振光谱性质。对化学位移各向异性对6-FPLP-酶信号线宽的贡献分析表明,辅酶分子与蛋白质紧密结合。游离6-FPLP蛋白中氟核的化学位移在pH 6至pH 9.1范围内与pH无关。当6-FPLP-酶与AMP、AMP加葡萄糖-1-P以及AMP加无机磷酸盐形成复合物时,分别观察到-11.0、-13.1和-10.4 ppm处的信号。这些不同的化学位移表明每个复合物中的蛋白质具有独特的构象。6-FPLP-蛋白-AMP复合物与结合葡萄糖-1-P的相同复合物之间的交换速率估计为3300±700 s-1,6-FPLP-蛋白-AMP复合物与结合无机磷酸盐之间的交换速率为500±100 s-1。前一种交换速率比6-FPAL-酶相同过程的交换速率快13倍。在存在配体的情况下,对温度对6-FPLP酶19F线形的影响分析表明,不同复合物之间的交换速率在20℃至10℃之间显著下降。在此温度范围内,天然酶和6-FPLP-酶在不同温度下的酶活性的阿伦尼乌斯图也显示出明显的曲率。(摘要截短于250字)

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