Lecomte Sophie, Ricoux Remy, Mahy Jean Pierre, Korri-Youssoufi Hafsa
LADIR, CNRS/UPMC, 2 rue Henri Dunant, 94320 Thiais, France.
J Biol Inorg Chem. 2004 Oct;9(7):850-8. doi: 10.1007/s00775-004-0586-4. Epub 2004 Aug 31.
Microperoxidase 8 (MP8), a heme octapeptide obtained by hydrolytic digestion of cytochrome c, was adsorbed at the surface of a roughened silver electrode in order to provide a new supported biomimetic system for hemoproteins. A combination of two techniques was used to study its redox and coordination properties: electrochemistry and surface-enhanced resonance Raman (SERR) spectroscopy. This allowed us to show that MP8 could be adsorbed as a monolayer at the surface of the roughened silver electrode, where it could undergo a reversible electron transfer. Under those conditions, a redox potential of -0.4 V vs. SCE (-0.16 V vs. NHE) was measured for MP8, which was almost identical to that reported for N-acetyl-MP8 in aqueous solution. In addition, whereas MP8 appeared to aggregate in solution, and led to a mixture of high-spin penta-coordinated (5cHS) and low-spin hexa-coordinated (6cLS) iron(III) or iron(II) species, it was recovered almost exclusively as a monomeric high-spin penta-coordinated species at the surface of the electrode, both in the reduced and in the oxidized states. This then allowed a free coordination site on the iron, on the distal face of MP8 accessible to ligands. Accordingly, experiments performed in the presence of potassium cyanide demonstrated that MP8 adsorbed on a silver electrode could be ligated by a sixth CN(-) ligand. Thus there is the possibility of binding several kinds of ligands such as O(2) or H(2)O(2), which will open the way to biocatalysis of oxidation reactions at the surface of an electrode, or ligands such as drugs which will lead to the design of new biosensors for molecules of biological interest.
微过氧化物酶8(MP8)是一种通过细胞色素c水解消化得到的血红素八肽,它被吸附在粗糙银电极表面,以提供一种新的用于血红蛋白的负载型仿生体系。采用两种技术相结合的方法来研究其氧化还原和配位性质:电化学和表面增强共振拉曼(SERR)光谱。这使我们能够证明MP8可以作为单分子层吸附在粗糙银电极表面,在那里它可以进行可逆的电子转移。在这些条件下,测得MP8相对于饱和甘汞电极(SCE)的氧化还原电位为-0.4 V(相对于标准氢电极(NHE)为-0.16 V),这与在水溶液中报道的N-乙酰-MP8的氧化还原电位几乎相同。此外,虽然MP8在溶液中似乎会聚集,并导致高自旋五配位(5cHS)和低自旋六配位(6cLS)铁(III)或铁(II)物种的混合物,但在电极表面,无论是还原态还是氧化态,它几乎完全以单体高自旋五配位物种的形式存在。这使得MP8远端面上铁原子上有一个自由的配位位点可供配体使用。因此,在氰化钾存在下进行的实验表明,吸附在银电极上的MP8可以与第六个CN(-)配体配位。因此,有可能结合几种配体,如O(2)或H(2)O(2),这将为电极表面的氧化反应生物催化开辟道路,或者结合药物等配体,这将导致设计用于生物感兴趣分子的新型生物传感器。