首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Intermediate spectra and photocycle kinetics of the Asp96 → Asn mutant bacteriorhodopsin determined by singular value decomposition with self-modeling
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Intermediate spectra and photocycle kinetics of the Asp96 → Asn mutant bacteriorhodopsin determined by singular value decomposition with self-modeling

机译:通过自建模的奇异值分解确定Asp96→Asn突变细菌视紫红质的中间光谱和光循环动力学

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摘要

Singular value decomposition with self-modeling is applied to resolve the intermediate spectra and kinetics of the Asp96 → Asn mutant bacteriorhodopsin. The search for the difference spectra of the intermediates is performed in eigenvector space on the stoichiometric plane. The analysis of data at pH values ranging from 4 to 8 and temperatures between 5 and 25°C reveals significant, early partial recovery of the initial state after photoexcitation. The derived spectra are not biased by assumed photocycles. The intermediate spectra derived in the initial step differ from spectra determined in prior analyses, which results in intermediate concentrations with improved stoichiometric properties. Increasingly more accurate photocycles follow with increasing assumed complexity, of which parallel models are favored, consistent with recent, independent experimental evidence.
机译:具有自建模的奇异值分解用于解析Asp96→Asn突变细菌视紫红质的中间光谱和动力学。在化学计量平面上的特征向量空间中进行中间体差异光谱的搜索。在pH值介于4到8以及温度介于5到25°C之间的情况下对数据进行的分析表明,光激发后,初始状态有明显的早期恢复。推导的光谱不受假定的光周期的影响。初始步骤中得出的中间光谱与先前分析中确定的光谱不同,这导致中间浓度具有改善的化学计量性质。随之而来的是,越来越精确的光周期随着假定的复杂性的增加而增加,与最近的独立实验证据一致,偏爱使用并行模型。

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