Lambeth D O, Ericson G R, Yorek M A, Ray P D
Biochim Biophys Acta. 1982 Dec 17;719(3):501-8. doi: 10.1016/0304-4165(82)90239-2.
The influences of buffers and iron chelators on the rate of autoxidation of Fe2+ were examined in the pH range 6.0-7.4. The catalysis by Fe2+ and Fe3+ of the autoxidation of dithiothreitol was also investigated. In buffers which are non- or poor chelators of iron, 0.25 mM Fe2+, and 0.3 mM dithiothreitol when present with iron, oxidize within minutes at pH 7.4 and 30 degrees C. The stability of each increases as the pH is decreased and more than 90% of each remains after 1 h at pH 6.0. In the presence of buffers or oxy-ligands which preferentially and strongly chelate Fe3+ over Fe2+, Fe2+ autoxidizes rapidly in the pH range 6.0-7.4 while dithiothreitol is protected. Ligands which preferentially bind strongly to Fe2+ stabilize both Fe2+ and dithiothreitol at pH 7.4. Dithiothreitol readily reduces Fe3+ in non-chelating buffers or in the presence of strong chelators of Fe2+, however, the ferrous ions produced are prone to reoxidation at higher pH values. These results show that Fe2+ and dithiothreitol are very susceptible to autoxidation in the neutral pH range, and that the rates are strongly influenced by the presence of chelators of Fe2+ and Fe3+. The rapid autoxidations of these species need to be taken into account when designing and interpreting experiments involving Fe2+ or both dithiothreitol and iron.
在pH值6.0 - 7.4范围内,研究了缓冲液和铁螯合剂对Fe2+自氧化速率的影响。还研究了Fe2+和Fe3+对二硫苏糖醇自氧化的催化作用。在铁的螯合能力较弱或无螯合能力的缓冲液中,0.25 mM的Fe2+以及与铁共存时0.3 mM的二硫苏糖醇,在pH 7.4和30℃条件下几分钟内就会氧化。随着pH值降低,二者的稳定性均增加,在pH 6.0时1小时后每种物质仍有超过90%留存。在优先且强烈螯合Fe3+而非Fe2+的缓冲液或氧配体存在的情况下,Fe2+在pH 6.0 - 7.4范围内迅速自氧化,而二硫苏糖醇受到保护。优先与Fe2+强烈结合的配体在pH 7.4时能稳定Fe2+和二硫苏糖醇。在非螯合缓冲液或存在强Fe2+螯合剂的情况下,二硫苏糖醇能轻易还原Fe3+,然而,所产生的亚铁离子在较高pH值时易于再氧化。这些结果表明,Fe2+和二硫苏糖醇在中性pH范围内极易发生自氧化,且速率受Fe2+和Fe3+螯合剂的存在强烈影响。在设计和解释涉及Fe2+或二硫苏糖醇与铁二者的实验时,需要考虑这些物质的快速自氧化。