Jiang Jiansheng, Daniels Brenda V, Fu Dax
Department of Biology, Brookhaven National Laboratory, Upton, New York 11973, USA.
J Biol Chem. 2006 Jan 6;281(1):454-60. doi: 10.1074/jbc.M508926200. Epub 2005 Oct 20.
AqpZ is a homotetramer of four water-conducting channels that facilitate rapid water movements across the plasma membrane of Escherichia coli. Here we report a 3.2 angstroms crystal structure of the tetrameric AqpZ (tAqpZ). All channel-lining residues in the four monomeric channels are found orientated in nearly identical positions with one marked exception at the narrowest channel constriction, where the side chain of a highly conserved Arg-189 adopts two distinct conformational orientations. In one of the four monomers, the guanidino group of Arg-189 points toward the periplasmic vestibule, opening up the constriction to accommodate the binding of a water molecule through a tridentate H-bond. In the other three monomers, the Arg-189 guanidino group bends over to form an H-bond with carbonyl oxygen of the Thr-183, thus occluding the channel. Therefore, the tAqpZ structure reveals two distinct Arg-189 confirmations associated with water permeation through the channel constrictions. Alternation between the two Arg-189 conformations disrupts continuous flow of water, thus regulating the open probability of the water pore. Further, the difference in Arg-189 displacements is correlated with a strong electron density found between the first transmembrane helices of two open channels, suggesting that the observed Arg-189 conformations are stabilized by asymmetrical subunit interactions in tAqpZ.
水通道蛋白Z(AqpZ)是由四个水传导通道组成的同四聚体,可促进水快速穿过大肠杆菌的质膜。在此,我们报道了四聚体AqpZ(tAqpZ)的3.2埃晶体结构。四个单体通道中所有构成通道内壁的残基几乎都处于相同位置,但在最窄的通道缩窄处有一个明显例外,即高度保守的精氨酸-189(Arg-189)的侧链采取两种不同的构象取向。在四个单体中的一个单体中,Arg-189的胍基指向周质前庭,打开缩窄处以便通过三齿氢键容纳水分子的结合。在其他三个单体中,Arg-189的胍基弯折以与苏氨酸-183(Thr-183)的羰基氧形成氢键,从而封闭通道。因此,tAqpZ结构揭示了与水通过通道缩窄处渗透相关的两种不同的Arg-189构象。两种Arg-189构象之间的交替破坏了水的连续流动,从而调节了水孔的开放概率。此外,Arg-189位移的差异与在两个开放通道的第一个跨膜螺旋之间发现的强电子密度相关,这表明观察到的Arg-189构象通过tAqpZ中不对称的亚基相互作用得以稳定。