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迈向光系统II的人工模型:通过酪氨酸衍生物与三联吡啶钌(II)共价连接的锰(II,II)二聚体。

Towards an artificial model for Photosystem II: a manganese(II,II) dimer covalently linked to ruthenium(II) tris-bipyridine via a tyrosine derivative.

作者信息

Sun L, Raymond M K, Magnuson A, LeGourriérec D, Tamm M, Abrahamsson M, Kenéz P H, Mårtensson J, Stenhagen G, Hammarström L, Styring S, Akermark B

机构信息

Department of Chemistry, Organic Chemistry, Royal Institute of Technology KTH, Stockholm, Sweden.

出版信息

J Inorg Biochem. 2000 Jan 15;78(1):15-22. doi: 10.1016/s0162-0134(99)00200-7.

Abstract

In order to model the individual electron transfer steps from the manganese cluster to the photooxidized sensitizer P680+ in Photosystem II (PS II) in green plants, the supramolecular complex 4 has been synthesized. In this complex, a ruthenium(II) tris-bipyridine type photosensitizer has been linked to a manganese(II) dimer via a substituted L-tyrosine, which bridges the manganese ions. The trinuclear complex 4 was characterized by electron paramagnetic resonance (EPR) and electrospray ionization mass spectrometry (ESI-MS). The excited state lifetime of the ruthenium tris-bipyridine moiety in 4 was found to be about 110 ns in acetonitrile. Using flash photolysis in the presence of an electron acceptor (methylviologen), it was demonstrated that in the supramolecular complex 4 an electron was transferred from the excited state of the ruthenium tris-bipyridine moiety to methylviologen, forming a methylviologen radical and a ruthenium(III) tris-bipyridine moiety. Next, the Ru(III) species retrieved the electron from the manganese(II/II) dimer in an intramolecular electron transfer reaction with a rate constant kET > 1.0 x 10(7) s(-1), generating a manganese(II/III) oxidation state and regenerating the ruthenium(II) photosensitizer. This is the first example of intramolecular electron transfer in a supramolecular complex, in which a manganese dimer is covalently linked to a photosensitizer via a tyrosine unit, in a process which mimics the electron transfer on the donor side of PS II.

摘要

为了模拟绿色植物光系统II(PS II)中从锰簇到光氧化敏化剂P680 +的单个电子转移步骤,已合成了超分子配合物4。在该配合物中,一种三联吡啶钌(II)型敏化剂通过取代的L-酪氨酸与锰(II)二聚体相连,该酪氨酸桥接锰离子。通过电子顺磁共振(EPR)和电喷雾电离质谱(ESI-MS)对三核配合物4进行了表征。发现4中三联吡啶钌部分的激发态寿命在乙腈中约为110 ns。在电子受体(甲基紫精)存在下使用闪光光解表明,在超分子配合物4中,电子从三联吡啶钌部分的激发态转移到甲基紫精,形成甲基紫精自由基和三联吡啶钌(III)部分。接下来,Ru(III)物种在分子内电子转移反应中从锰(II / II)二聚体中获取电子,速率常数kET> 1.0 x 10(7)s(-1),产生锰(II / III)氧化态并再生钌(II)敏化剂。这是超分子配合物中分子内电子转移的第一个例子,其中锰二聚体通过酪氨酸单元与敏化剂共价连接,该过程模拟了PS II供体侧的电子转移。

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