Rezaei-Zarchi S, Saboury A A, Ghourchian H, Hong J, Barzegar A, Norouzi P, Moosavi-Movahedi A A, Ganjali M R, Javed A
Institute of Biochemistry and Biophysics, University of Tehran, Tehran, Iran.
J Biosci. 2007 Mar;32(2):271-8. doi: 10.1007/s12038-007-0027-y.
The effects of DPG,IHP,GTP,GDP and GMP on the structure and stability of haemoglobin were electrochemically investigated with an iodide-modified silver electrode in 0.01 M KNO 3 at pH 7.0.Anodic and cathodic peaks of haemoglobin were observed at 250 mV and 12 mV with a formal potential value of 133 mV vs.Ag/AgCl.The effects of different concentrations of DPG,IHP,GTP,GDP and GMP on the anaerobic redox reaction were determined. The results showed that DPG and IHP can lead to a positive shift in the reduction peak of haemoglobin,indicating that the oxidation peak shift of haemoglobin was small as a result of stabilization of the reduced state and destabilization of the R-like state of haemoglobin.GTP elicited a more positive shift in the cathodic and anodic peaks of haemoglobin at a higher concentration,signifying that it has a low-affinity binding site on haemoglobin.The positive shift of the cathodic and anodic peaks revealed a slight variation in the structure and indicated the unfolding of haemoglobin in the presence of high concentrations of GTP.Our study also showed that GDP and GMP did not cause significant shift the cathodic and anodic peaks of haemoglobin even at high concentrations,refuting the existence of specific GDP-and GMP-binding sites on the protein.Moreover,the iodide-modified silver electrode method proved to be easy and useful in investigating the effects of ligands or other effectors on haemoglobin in solution.
在pH 7.0的0.01 M KNO₃中,使用碘化物修饰的银电极对二磷酸甘油酸(DPG)、肌醇六磷酸(IHP)、三磷酸鸟苷(GTP)、二磷酸鸟苷(GDP)和一磷酸鸟苷(GMP)对血红蛋白结构和稳定性的影响进行了电化学研究。在相对于Ag/AgCl的形式电位值为133 mV时,观察到血红蛋白的阳极和阴极峰分别位于250 mV和12 mV。测定了不同浓度的DPG、IHP、GTP、GDP和GMP对厌氧氧化还原反应的影响。结果表明,DPG和IHP可导致血红蛋白还原峰正向移动,这表明由于血红蛋白还原态的稳定和类R态的不稳定,血红蛋白的氧化峰移动较小。在较高浓度下,GTP引起血红蛋白阴极和阳极峰更正向的移动,这表明它在血红蛋白上有一个低亲和力结合位点。阴极和阳极峰的正向移动揭示了结构上的轻微变化,并表明在高浓度GTP存在下血红蛋白发生了解折叠。我们的研究还表明,即使在高浓度下,GDP和GMP也不会引起血红蛋白阴极和阳极峰的显著移动,这反驳了该蛋白质上存在特异性GDP和GMP结合位点的观点。此外,碘化物修饰的银电极方法被证明在研究配体或其他效应物对溶液中血红蛋白的影响方面简便且有用。