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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Quantum-mechanical study of lead coordination in sulfur-rich proteins: Mode and structure recognition in uv resonance raman spectra
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Quantum-mechanical study of lead coordination in sulfur-rich proteins: Mode and structure recognition in uv resonance raman spectra

机译:富硫蛋白质中铅配位的量子力学研究:紫外共振拉曼光谱中的模式和结构识别

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摘要

Resonance Raman spectra are computed applying the weighted gradient methodology with CIS and DFT gradients to determine the characteristic spectral patterns for Hg(II) and Pb(II) loaded sulfur-rich proteins while excited to a characteristic LMCT electronic transition band. A framework of structure-spectrum relationships is established to assess lead coordination modes via vibrational spectroscopy. Illustrative calculations on Hg(II) complexes agree with experimental data demonstrating reliability and accuracy of the applied methodology. In contrast to Hg(II) complexes, a unique 3-center-4-electron hypervalent C _βH?S interaction present in lead-sulfur complexes was established and suggested to play a key role in the strong preference for lead versus other metal ions in lead specific proteins such as PbrR691. The characteristic Pb-S symmetric stretching bands, predicted without additional refinements such as scaling of a force field or frequencies, are found around 238 cm ~(-1) for 3-coordinated lead-sulfur domains and around 228 cm ~(-1) for 4-coordinated lead-sulfur domains. These results present an experimental challenge for clear detection of lead coordination via solely UVRR spectroscopy. In addition to predicted UVRR spectra, UVRR excitation profiles for relevant vibrational bands of lead-sulfur domains are presented.
机译:使用具有CIS和DFT梯度的加权梯度方法计算共振拉曼光谱,以确定Hg(II)和Pb(II)负载的富硫蛋白质的特征光谱图,同时被激发到特征LMCT电子跃迁带。建立了结构-光谱关系的框架,以通过振动光谱法评估铅的协调模式。汞(II)配合物的说明性计算与实验数据吻合,证明了所应用方法的可靠性和准确性。与Hg(II)络合物相反,铅-硫络合物中存在独特的3中心4电子高价C_βH2S相互作用,并表明在铅相对于其他金属离子的强烈偏好中起关键作用导致特定蛋白如PbrR691。对于三配位的硫-硫畴,在不进行额外细化(例如按力场或频率的缩放等)的情况下预测得到的特征性Pb-S对称拉伸带约为238 cm〜(-1),约为228 cm〜(-1)。用于4配位的铅硫结构域。这些结果提出了仅通过UVRR光谱清晰检测铅配位的实验挑战。除了预测的UVRR光谱外,还提供了铅-硫畴相关振动带的UVRR激发曲线。

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