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Single-channel water permeabilities of Escherichia coli aquaporins AqpZ and GlpF

机译:大肠杆菌水通道蛋白AqpZ和GlpF的单通道水渗透率

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From equilibrium molecular dynamics simulations we have determined single-channel water permeabilities for Escherichia coli aquaporin Z (AqpZ) and aquaglyceroporin GlpF with the channels embedded in lipid bilayers. GlpF's osmotic water permeability constant p(f) exceeds by 2-3 times that of AqpZ and the diffusive permeability constant (p(d)) of GlpF is found to exceed that of AqpZ 2-9-fold. Achieving complete water selectivity in AqpZ consequently implies lower transport rates overall relative to the less selective, wider channel of GlpF. For AqpZ, the ratio p(f)/p(d) congruent to 12 is close to the average number of water molecules in the channel lumen, whereas for GlpF, p(f)/p(d). congruent to 4. This implies that single-file structure of the luminal water is more pronounced for AqpZ, the narrower channel of the two. Electrostatics profiles across the pore lumens reveal that AqpZ significantly reinforces water-channel interactions, and weaker water-water interactions in turn suppress water-water correlations relative to GlpF. Consequently, suppressed water-water correlations across the narrow selectivity filter become a key structural determinant for water permeation causing luminal water to permeate slower across AqpZ.
机译:通过平衡分子动力学模拟,我们确定了大肠杆菌水通道蛋白Z(AqpZ)和水甘油通道蛋白GlpF的单通道水渗透性,通道嵌入脂质双层中。 GlpF的渗透水渗透率常数p(f)超过AqpZ的2-3倍,并且发现GlpF的扩散渗​​透率常数(p(d))超过AqpZ的2-9倍。因此,相对于GlpF选择性较低,较宽的通道,在AqpZ中实现完全的水选择性意味着总体上较低的传输速率。对于AqpZ,等于12的比率p(f)/ p(d)接近通道内腔中水分子的平均数,而对于GlpF,p(f1)/ p(d)。等于4。这意味着对于AqpZ(两者中较窄的通道),腔内水的单文件结构更为明显。穿过孔腔的静电分布图表明,AqpZ显着增强了水通道相互作用,而较弱的水-水相互作用反过来又抑制了与GlpF的水-水相关性。因此,抑制通过窄选择性过滤器的水水相关性成为水渗透的关键结构决定因素,导致管腔水在AqpZ上的渗透较慢。

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