Chimie Organique et Photochimie, Université libre de Bruxelles, CP 160/08, 50 Avenue Franklin Roosevelt, B-1050 Bruxelles, Belgium.
Inorg Chem. 2010 Dec 6;49(23):10867-74. doi: 10.1021/ic101214m. Epub 2010 Nov 2.
The photoreaction mechanism of Ru(TAP)(2)(phen) and Ru(TAP)(3) (TAP = 1,4,5,8-tetraazaphenanthrene) with tryptophan (Trp), N-acetyl-Trp, and Lys-Trp-Lys is examined. The existence of a photoelectron-transfer process from the amino acid unit is demonstrated by laser flash photolysis experiments. The back electron transfer (BET) from the reduced complex to the oxidized amino acid, occurring at the microsecond time scale, corresponds approximately to an equimolecular-bimolecular process; however, it is disturbed by another reaction, originating from the oxidized Trp. Moreover, in competition with the BET, the reduced and oxidized intermediates give rise to an adduct. The latter is clearly detected by gel electrophoresis experiments in denaturing conditions, with a system composed of an oligonucleotide derivatized at the 3' end by the Ru(II)TAP complex and hybridized with the complementary sequence functionalized at the 5' end by the tripeptide Lys-Trp-Lys. Thus, upon illumination, a cross-linking between the two strands is observed, which originates from the presence of a Trp residue.
Ru(TAP)(2)(phen) 和 Ru(TAP)(3)(TAP = 1,4,5,8-四氮杂菲)与色氨酸 (Trp)、N-乙酰色氨酸 (N-acetyl-Trp) 和赖氨酰色氨酰赖氨酰 (Lys-Trp-Lys) 的光反应机制进行了研究。通过激光闪光光解实验证明了氨基酸单元存在光电转移过程。从还原配合物到氧化氨基酸的反向电子转移 (BET) 发生在微秒时间尺度上,对应于等分子双分子过程;然而,它受到来自氧化色氨酸的另一个反应的干扰。此外,在与 BET 竞争的情况下,还原和氧化中间体产生加合物。后者通过凝胶电泳实验在变性条件下被清楚地检测到,该系统由寡核苷酸组成,该寡核苷酸在 3' 末端由 Ru(II)TAP 配合物衍生化,并与 5' 末端由三肽 Lys-Trp-Lys 功能化的互补序列杂交。因此,在光照下,观察到两条链之间的交联,这源于色氨酸残基的存在。