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α-螺旋多肽中的光致电子转移:对构象和电子供体-受体距离的依赖性。

Photoinduced electron transfer in alpha-helical polypeptides: dependence on conformation and electron donor-acceptor distance.

作者信息

Jones Guilford, Zhou Xin, Vullev Valentine I

机构信息

Department of Chemistry and the Photonics Center, Boston University, Boston, MA 02215, USA.

出版信息

Photochem Photobiol Sci. 2003 Nov;2(11):1080-7. doi: 10.1039/b306490e.

Abstract

Long distance electron transfer in proteins is a multiple-pathway process whose kinetics is modulated by the dynamics of flexible peptide chains. Such complexity can be observed even in relatively simple systems, eg. donor bridge acceptor, where the bridge is a polypeptide alpha-helix. We have investigated a series of 24-residue helical polypeptides that exist as monomers in water alcohol media. The principal chromophore and electron acceptor, a pyrene moiety, is connected to the N-terminus via a flexible linker. The electron donor, a tryptophan residue, was placed various distances away from the pyrene-labeled terminus. Time-resolved emission spectroscopy, associated with the fluorescent pendant, pyrene, was employed to study the photoinduced electron-transfer kinetics for the polypeptide analogs. Mechanisms involving only through-bond pathways could not account for the pattern of measured fast charge-separation rates. When the electron donor was placed far enough from the acceptor (i.e. at least six residues apart), a decrease in the electron-transfer rates with the donor acceptor distance was observed. The emission decays for polypeptides with the electron donor exhibited complex behavior and could not be fit using a single-exponential function. For the treatment of the time-resolved data, a multi-exponential model was developed that is based on the assumption of a Gaussian distribution of the classical electronic coupling beta values among the conformers responsible for the observed electron-transfer processes. This approach proved to be informative because, in addition to the mean values of the electron-transfer rate constants, the widths of the distributions of these rates illustrate the size of the conformational space explored by the flexible chains that provide pathways for electron transfer.

摘要

蛋白质中的长距离电子转移是一个多途径过程,其动力学受到柔性肽链动力学的调节。即使在相对简单的系统中也能观察到这种复杂性,例如供体-桥-受体系统,其中桥是一条多肽α螺旋。我们研究了一系列在水-醇介质中以单体形式存在的24个残基的螺旋多肽。主要发色团和电子受体芘部分通过柔性接头连接到N端。电子供体色氨酸残基被放置在距离芘标记末端不同距离处。利用与荧光侧基芘相关的时间分辨发射光谱研究了多肽类似物的光诱导电子转移动力学。仅涉及通过键途径的机制无法解释测得的快速电荷分离速率模式。当电子供体与受体放置得足够远(即至少相隔六个残基)时,观察到电子转移速率随供体-受体距离的减小。具有电子供体的多肽的发射衰减表现出复杂的行为,不能用单指数函数拟合。为了处理时间分辨数据,基于负责观察到的电子转移过程的构象异构体之间经典电子耦合β值的高斯分布假设,开发了一个多指数模型。这种方法被证明是有意义的,因为除了电子转移速率常数的平均值外,这些速率分布的宽度说明了为电子转移提供途径的柔性链所探索的构象空间的大小。

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