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The influences of protonation state of histidine on aromatic/arginine region of aquaporin-1 protein

机译:组氨酸的质子化状态对aquaporin-1蛋白芳香/精氨酸区域的影响

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摘要

Aquaporin-1 (AQP1) is widely distributed in the epithelial tissue for water absorption and secretion. The histidine (His182) residue in the aromatic/arginine (ar/R) constriction region plays an important role in transporting water through the membrane. In this study, we have performed a total of 46 ns equilibrium molecular dynamics (MD) simulations, and obtained the influence of His182 in two protonation states (Hsd is the proton at N _δ and Hse is the proton at N_ε) on the ar/R region. Water permeation rate shows that it is easier for water molecules to permeate the ar/R region of the AQP1 with residue in the Hsd state than in the Hse state. The minimum radii of the pore in the ar/R region were calculated during the last 10 ns MD simulation. We have analysed the correlation among the state of the pore (open or close), the minimum radius of the ar/R region and the dihedral angles < C_β-C_γ-C _δ-N_ε of Arg197. The results show that the minimum radius can be used to mark the state of the pore.
机译:Aquaporin-1(AQP1)广泛分布在上皮组织中,以吸收和分泌水。芳香族/精氨酸(ar / R)收缩区域中的组氨酸(His182)残基在通过膜输送水方面起着重要作用。在这项研究中,我们总共进行了46 ns的平衡分子动力学(MD)模拟,并获得了在两个质子化状态(Hsd是N_δ的质子,Hse是N_ε的质子)的His182的影响。 R区。透水率表明,与Hse状态相比,水分子更容易透过残留在Hsd状态的AQP1的ar / R区。在最近的10 ns MD模拟过程中,计算了ar / R区域中孔的最小半径。我们分析了孔隙状态(打开或关闭),ar / R区域的最小半径和Arg197的二面角

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