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Kinetic Intermediates of Holo- and Apo-Myoglobin Studied Using HDX-TIMS-MS and Molecular Dynamic Simulations

机译:使用HDX-TIMS-MS和分子动力学模拟研究全-和载脂蛋白-肌红蛋白的动力学中间体

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摘要

In the present work, the kinetic intermediates of holo- and apomyoglobin were studied by correlating the ion-neutral collision cross section and time resolved H/D back exchange rate simultaneously in a trapped ion mobility spectrometer coupled to a mass spectrometer (HDX-TIMS-MS). The high mobility resolution of the TIMS cell permitted the observation of multiple IMS bands and complementary molecular dynamics simulations resulted in the assignment of candidate structures for each experimental condition studied (e.g., holo [M+8H]+8–[M+9H]+9 and apo [M+9H]+9–[M+19H]+19). Inspection of the kinetic intermediates suggests that the tertiary structure of apomyoglobin unfolds quickly upon the loss of the Fe protoporphyrin IX that stabilizes the interactions between the A, G, and H helices. In the absence of the porphyrin heme, the apomyoglobin unfolds to Xn kinetic intermediates that vary in the extent of unfolding as a result of the observed charge state.
机译:在目前的工作中,通过在耦合离子阱质谱仪(HDX-TIMS-多发性硬化症)。 TIMS细胞的高迁移率分辨率允许观察多个IMS谱带,并且互补的分子动力学模拟导致为每个研究的实验条件分配了候选结构(例如,全息[M + 8H] +8 – [M + 9H] +9 和载脂蛋白[M + 9H] +9 – [M + 19H] +19 )。动力学中间体的检查表明,在失去铁原卟啉IX从而稳定了A,G和H螺旋之间的相互作用之后,磷肌红蛋白的三级结构迅速展开。在不存在卟啉血红素的情况下,apomyoglobin展开为X n 动力学中间体,由于观察到的电荷状态,该中间体的展开程度有所不同。

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