Boukhalfa Hakim, Reilly Sean D, Michalczyk Ryszard, Iyer Srinivas, Neu Mary P
Chemistry Division, Los Alamos National Laboratory, Los Alamos, New Mexico 87545, USA.
Inorg Chem. 2006 Jul 10;45(14):5607-16. doi: 10.1021/ic060196p.
The iron complexation of a fluorescent green pyoverdin siderophore produced by the environmental bacterium Pseudomonas putida was characterized by solution thermodynamic methods. Pyoverdin binds iron through three bidentate chelate groups, a catecholate, a hydroxamate, and an alpha-hydroxycarboxylic acid. The deprotonation constants of the free pyoverdin and Fe(III)-pyoverdin complex were determined through a series of potentiometric and spectrophotometric experiments. The ferric complex of pyoverdin forms at very low pH (pH < 2), but full iron coordination does not occur until neutral pH. The calculated pM value of 25.13 is slightly lower than that for pyoverdin PaA (pM = 27), which coordinates iron by a catecholate and two hydroxamate groups. The redox potential of Fe-pyoverdin was found to be very pH sensitive. At high pH (approximately pH 9-11) where pyoverdin coordinates Fe in a hexadentate mode the redox potential is -0.480 V (NHE); however, at neutral pH where full Fe coordination is incomplete, the redox potential is more positive (E(1/2) = -0.395 V). The positive shift in the redox potential and the partial dissociation of the Fe-pyoverdin complex with pH decrease provides a path toward in vivo iron release.
通过溶液热力学方法对环境细菌恶臭假单胞菌产生的荧光绿色绿脓菌素铁载体的铁络合作用进行了表征。绿脓菌素通过三个双齿螯合基团结合铁,即儿茶酚酸盐、异羟肟酸盐和α-羟基羧酸。通过一系列电位滴定和分光光度实验测定了游离绿脓菌素和铁(III)-绿脓菌素络合物的去质子化常数。绿脓菌素的铁络合物在非常低的pH值(pH < 2)下形成,但直到中性pH值才会发生完全的铁配位。计算得出的pM值为25.13,略低于通过儿茶酚酸盐和两个异羟肟酸基团配位铁的绿脓菌素PaA的pM值(pM = 27)。发现铁-绿脓菌素的氧化还原电位对pH值非常敏感。在高pH值(约pH 9 - 11)下,绿脓菌素以六齿模式配位铁,氧化还原电位为-0.480 V(NHE);然而,在中性pH值下,铁的完全配位不完全,氧化还原电位更正(E(1/2) = -0.395 V)。氧化还原电位的正向移动以及铁-绿脓菌素络合物随pH值降低的部分解离为体内铁释放提供了一条途径。