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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Thermal Isomerization of the Chromoprotein asFP595 and Its Kindling Mutant A143G: QM/MM Molecular Dynamics Simulations
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Thermal Isomerization of the Chromoprotein asFP595 and Its Kindling Mutant A143G: QM/MM Molecular Dynamics Simulations

机译:色蛋白asFP595及其引发突变体A143G的热异构化:QM / MM分子动力学模拟

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摘要

Chromoprotein asFP595 and its A143G variant called kindling fluorescent protein (KFP) are among the chronologically first species for which trans-cis chromophore isomerization has been proposed as a driving force of photoswitching. In spite of long-lasting efforts to characterize the route between protein conformations referring to the trans and cis forms of the chromophore, the molecular mechanism of this transformation is still under debate. We report the results of computational studies of the trans-cis isomerization of the anionic and neutral chromophore inside the protein matrices in the ground electronic state for both variants, asFP595 and KFP. Corresponding free energy profiles (potentials of mean force) were evaluated by using molecular dynamics simulations with the quantum mechanical - molecular mechanical (QM/ MM) forces. The computed free energy barrier for the cis-trans ground state (thermal) isomerization reaction is about 2 kcal/mol higher in KFP than that, in asFP595. These results provide interpretation of experimental studies on thermal relaxation from the light-induced activation of fluorescence of these proteins and correctly show that the A143G mutation in asFP595 noticeably increases the lifetime of the fluorescence species.
机译:时序蛋白asFP595及其A143G变种,称为点燃荧光蛋白(KFP),是按时间顺序排列的第一个物种,其中反顺式生色团异构化已被提议作为光开关的驱动力。尽管为描述发色团的反式和顺式形式的蛋白质构象之间的途径进行了长期努力,但这种转化的分子机制仍在争论中。我们报告了两个变体asFP595和KFP的基态电子状态下蛋白质基质内阴离子和中性发色团的反式和中性发色团的反式-顺式异构化的计算研究结果。通过使用分子动力学模拟和量子力学-分子力学(QM / MM)力,评估了相应的自由能分布(平均力势)。计算出的顺式-反式基态(热)异构化反应的自由能垒在KFP中比在asFP595中高约2 kcal / mol。这些结果为从光诱导的这些蛋白质的荧光活化引起的热弛豫的实验研究提供了解释,并正确显示asFP595中的A143G突变显着延长了荧光物质的寿命。

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