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首页> 外文期刊>Biochemical Society Transactions >Coherent Raman detected electron spin resonance spectroscopy of metalloproteins: linking electron spin resonance and magnetic circular dichroism.
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Coherent Raman detected electron spin resonance spectroscopy of metalloproteins: linking electron spin resonance and magnetic circular dichroism.

机译:连贯的拉曼检测到金属蛋白的电子自旋共振光谱:将电子自旋共振和磁性圆形二色性连接。

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摘要

The simultaneous excitation of paramagnetic molecules with optical (laser) and microwave radiation in the presence of a magnetic field can cause an amplitude, or phase, modulation of the transmitted light at the microwave frequency. The detection of this modulation indicates the presence of coupled optical and ESR transitions. The phenomenon can be viewed as a coherent Raman effect or, in most cases, as a microwave frequency modulation of the magnetic circular dichroism by the precessing magnetization. By allowing the optical and magnetic properties of a transition metal ion centre to be correlated, it becomes possible to deconvolute the overlapping optical or ESR spectra of multiple centres in a protein or of multiple chemical forms of a particular centre. The same correlation capability also allows the relative orientation of the magnetic and optical anisotropies of each species to be measured, even when the species cannot be obtained in a crystalline form. Such measurements provide constraints on electronic structure calculations. The capabilities of the method are illustrated by data from the dimeric mixed-valence Cu(A) centre of nitrous oxide reductase (N(2)OR) from Paracoccus pantotrophus.
机译:在存在磁场的情况下,在存在磁场的情况下使用光学(激光)和微波辐射的顺磁分子同时激发会导致微波频率下传输光的调制。该调制的检测表明存在耦合光学和ESR跃迁。该现象可以被视为连贯的拉曼效应,或者在大多数情况下是通过预击磁力化对磁性圆形二色性的微波频率调节。通过允许过渡金属离子中心的光学和磁性能与蛋白质或特定中心的多种化学形式的多个中心的重叠的光学或ESR光谱相关。相同的相关能力还允许测量每个物种的磁和光学各向异性的相对取向,即使无法以晶体形式获得该物种。这样的测量对电子结构计算提供了限制。该方法的功能由来自panotrophus二二二二氮还原酶(N(2)或)的二聚体混合价Cu(A)中心的数据说明。

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