Heighton Lynne, Schmidt Walter F, Siefert Ronald L
Chemistry and Biochemistry Department, University of Maryland, College Park, Maryland 20742, USA.
J Agric Food Chem. 2008 Oct 22;56(20):9543-7. doi: 10.1021/jf801465y. Epub 2008 Sep 18.
Inositol phosphates are metabolically derived organic phosphates (P) that increasingly appear to be an important sink and source of P in the environment. Salts of myo-inositol hexakisdihydrogen phosphate (IHP) or more commonly phytate are the most common inositol phosphates in the environment. IHP resists acidic dephosphorylation and enzymatic dephosphorylation as ferric or ferrous IHP. Mobility of IHP iron complexes is potentially pH and redox responsive, making the time scale and environmental fate and transport of the P associated with the IHP of interest to the mass balance of phosphorus. Ferric and ferrous complexes of IHP were investigated by proton nuclear magnetic resonance spectroscopy ( (1)H NMR) and enzymatic dephosphorylation. Ferrous IHP was found to form quickly and persist for a longer period then ferric IHP. Dissociation constants derived from (1)H NMR experiments of chemically exchanging systems at equilibrium were 1.11 and 1.19 and formation constants were 0.90 and 0.84 for ferric and ferrous IHP, respectively. The recovery of P from enzymatic dephosphorylation of ferric and ferrous IHP was consistent with the magnitude of the kinetic and equilibrium rate constants.
肌醇磷酸是代谢衍生的有机磷酸盐(P),在环境中似乎日益成为磷的重要汇和源。肌醇六磷酸二氢盐(IHP)或更常见的植酸盐是环境中最常见的肌醇磷酸。IHP像铁(III)或铁(II)的IHP一样,抗酸性脱磷酸作用和酶促脱磷酸作用。IHP铁络合物的迁移率可能对pH值和氧化还原反应有响应,这使得与IHP相关的磷的时间尺度、环境归宿和迁移成为磷质量平衡所关注的问题。通过质子核磁共振光谱(¹H NMR)和酶促脱磷酸作用研究了IHP的铁(III)和铁(II)络合物。发现亚铁IHP形成迅速,并且比铁(III)IHP持续时间更长。在平衡状态下,化学交换体系的¹H NMR实验得出的铁(III)和亚铁IHP的解离常数分别为1.11和1.19,形成常数分别为0.90和0.84。铁(III)和亚铁IHP酶促脱磷酸作用中磷的回收率与动力学和平衡速率常数的大小一致。