Klair S, Bansal S, Briat JF, Khodr H, Shioiri T, Leigh RA, Hider RC
Department of Pharmacy, King's College London, Manresa Road, London SW3 6LX, United Kingdom (N.v.W., S.K., S.B., H.K., R.C.H.).
Plant Physiol. 1999 Mar;119(3):1107-14. doi: 10.1104/pp.119.3.1107.
Nicotianamine (NA) occurs in all plants and chelates metal cations, including FeII, but reportedly not FeIII. However, a comparison of the FeII and ZnII affinity constants of NA and various FeIII-chelating aminocarboxylates suggested that NA should chelate FeIII. High-voltage electrophoresis of the FeNA complex formed in the presence of FeIII showed that the complex had a net charge of 0, consistent with the hexadentate chelation of FeIII. Measurement of the affinity constant for FeIII yielded a value of 10(20.6), which is greater than that for the association of NA with FeII (10(12.8)). However, capillary electrophoresis showed that in the presence of FeII and FeIII, NA preferentially chelates FeII, indicating that the FeIINA complex is kinetically stable under aerobic conditions. Furthermore, Fe complexes of NA are relatively poor Fenton reagents, as measured by their ability to mediate H2O2-dependent oxidation of deoxyribose. This suggests that NA will have an important role in scavenging Fe and protecting the cell from oxidative damage. The pH dependence of metal ion chelation by NA and a typical phytosiderophore, 2'-deoxymugineic acid, indicated that although both have the ability to chelate Fe, when both are present, 2'-deoxymugineic acid dominates the chelation process at acidic pH values, whereas NA dominates at alkaline pH values. The consequences for the role of NA in the long-distance transport of metals in the xylem and phloem are discussed.
烟酰胺(NA)存在于所有植物中,能螯合金属阳离子,包括FeII,但据报道不能螯合FeIII。然而,对NA与各种FeIII螯合氨基羧酸盐的FeII和ZnII亲和常数进行比较表明,NA应该能螯合FeIII。在FeIII存在下形成的FeNA络合物的高压电泳显示,该络合物的净电荷为0,这与FeIII的六齿螯合一致。FeIII亲和常数的测量值为10(20.6),大于NA与FeII结合的亲和常数(10(12.8))。然而,毛细管电泳表明,在FeII和FeIII存在的情况下,NA优先螯合FeII,这表明FeIINA络合物在有氧条件下动力学稳定。此外,通过NA的Fe络合物介导H2O2依赖的脱氧核糖氧化的能力来衡量,其作为芬顿试剂的活性相对较低。这表明NA在清除Fe和保护细胞免受氧化损伤方面将发挥重要作用。NA与典型的植物铁载体2'-脱氧麦根酸对金属离子螯合的pH依赖性表明,尽管两者都有螯合Fe的能力,但当两者都存在时,2'-脱氧麦根酸在酸性pH值下主导螯合过程,而NA在碱性pH值下主导螯合过程。本文讨论了NA在木质部和韧皮部中金属长距离运输中的作用所产生的后果。