Persmark M, Expert D, Neilands J B
Department of Molecular and Cell Biology, University of California, Berkeley 94720.
J Bacteriol. 1992 Jul;174(14):4783-9. doi: 10.1128/jb.174.14.4783-4789.1992.
Erwinia chrysanthemi 3937 possesses a saturable, high-affinity transport system for the ferric complex of its native siderophore chrysobactin, [N-alpha-(2,3-dihydroxybenzoyl)-D-lysyl-L-serine]. Uptake of 55Fe-labeled chrysobactin was completely inhibited by respiratory poison or low temperature and was significantly reduced in rich medium. The kinetics of chrysobactin-mediated iron transport were determined to have apparent Km and Vmax values of about 30 nM and of 90 pmol/mg.min, respectively. Isomers of chrysobactin and analogs with progressively shorter side chains mediated ferric iron transport as efficiently as the native siderophore, which indicates that the chrysobactin receptor primarily recognizes the catechol-iron center. Free ligand in excess only moderately reduced the accumulation of 55Fe. Chrysobactin may therefore be regarded as a true siderophore for E. chrysanthemi.
菊欧文氏菌3937拥有一个可饱和的、高亲和力的转运系统,用于转运其天然铁载体金杆菌素([N-α-(2,3-二羟基苯甲酰基)-D-赖氨酰-L-丝氨酸])的铁复合物。55Fe标记的金杆菌素的摄取被呼吸毒物或低温完全抑制,并且在丰富培养基中显著减少。测定了金杆菌素介导的铁转运动力学,其表观Km和Vmax值分别约为30 nM和90 pmol/mg·min。金杆菌素的异构体和侧链逐渐变短的类似物介导铁转运的效率与天然铁载体一样高,这表明金杆菌素受体主要识别儿茶酚-铁中心。过量的游离配体仅适度降低了55Fe的积累。因此,金杆菌素可被视为菊欧文氏菌的一种真正的铁载体。