Department of Life Sciences, Institute for Multidisciplinary Research, University of Belgrade, Kneza Višeslava 1, 11030 Belgrade, Serbia.
Dalton Trans. 2019 May 7;48(18):6061-6070. doi: 10.1039/c8dt04724c.
Biliverdin (BV), a product of heme catabolism, is known to interact with transition metals, but the details of such interactions under physiological conditions are scarce. Herein, we examined coordinate/redox interactions of BV with Cu2+ in phosphate buffer at pH 7.4, using spectrophotometry, HESI-MS, Raman spectroscopy, 1H NMR, EPR, fluorimetry, and electrochemical methods. BV formed a stable coordination complex with copper in 1 : 1 stoichiometry. The structure of BV was more planar and energetically stable in the complex. The complex showed strong paramagnetic effects that were attributed to an unpaired delocalized e-. The delocalized electron may come from BV or Cu2+, so the complex is formally composed either of BV radical cation and Cu1+ or of BV radical anion and Cu3+. The complex underwent oxidation only in the presence of both O2 and an excess of Cu2+, or a strong oxidizing agent, and it was resistant to reducing agents. The biological effects of the stable BV metallocomplex containing a delocalized unpaired electron should be further examined, and may provide an answer to the long-standing question of high energy investment in the catabolism of BV, which represents a relatively harmless molecule per se.
胆红素(BV)是血红素分解代谢的产物,已知其与过渡金属相互作用,但生理条件下此类相互作用的细节却鲜为人知。本研究采用分光光度法、HESI-MS、拉曼光谱、1H NMR、EPR、荧光法和电化学方法,在 pH 7.4 的磷酸盐缓冲液中检查了 BV 与 Cu2+ 的配位/氧化还原相互作用。BV 与铜以 1 :1 的化学计量比形成稳定的配位络合物。在络合物中,BV 的结构更加平面化,能量更稳定。该络合物表现出强烈的顺磁效应,归因于非定域的 e-。非定域电子可能来自 BV 或 Cu2+,因此该络合物的形式可以是 BV 正离子和 Cu1+,也可以是 BV 负离子和 Cu3+。只有在存在 O2 和过量 Cu2+或强氧化剂的情况下,该络合物才会发生氧化,并且对还原剂具有抗性。应进一步研究含非定域未配对电子的稳定 BV 金属络合物的生物学效应,这可能为血红素分解代谢中高能量投资的长期问题提供答案,因为 BV 本身就是一种相对无害的分子。