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Multiphoton Absorption of Myoglobin Nitric-Oxide complex: Relaxation by D-NEMD of a Stationary State

机译:肌红蛋白一氧化氮复杂的多光子吸收:通过放松静止状态的d-NEmD

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摘要

The photodissociation and geminate recombination of nitric oxide in myoglobin, under continuous illumination, is modeled computationally. The relaxation of the photon energy into the protein matrix is also considered in a single simulation scheme that mimics a complete experimental setup. The dynamic approach to Non Equilibrium Molecular Dynamics is used, starting from a steady state, to compute its relaxation to equilibrium. Simulations are conducted for the native form of sperm whale myoglobin and for two other mutants, V68W and L29F, illustrating a fair diversity of spatial and temporal geminate recombination processes. Energy flow to the heme and immediate protein environment provide hints to allostery. In particular a pathway of energy flow between the heme and the FG loop is illustrated. Although the simulations were conducted for myoglobin only, the thermal fluctuations of the FG corner are in agreement with the large structural shifts of FG during the allosteric transition of tetrameric hemoglobin.
机译:在连续照明下,在连续照明下,肌红蛋白在蛋白质中的一氧化氮的光沉积和Geminate重组是计算的。在模拟完整实验设置的单一模拟方案中也考虑将光子能量放入蛋白质基质中。从稳态开始使用非平衡分子动力学的动态方法,以计算其对平衡的弛豫。用于对鲸鱼肌卵石的本地形式和另外两个突变体,V68W和L29F进行模拟,示出了空间和时间的聚合物重组过程的公平多样性。能量流向血红素和立即蛋白质环境为祖先提供暗示。特别地,示出了血红素和FG环之间的能量流动的途径。虽然仅用于肌球蛋白的模拟,但FG角的热波动与四聚体血红蛋白的变构过渡期间FG的大结构偏移一致。

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