Cushman Ian, Bowman Brian R, Sowa Mathew E, Lichtarge Olivier, Quiocho Florante A, Moore Mary Shannon
Department of Molecular and Cellular Biology, Baylor College of Medicine, Houston, TX 77030, USA.
J Mol Biol. 2004 Nov 19;344(2):303-10. doi: 10.1016/j.jmb.2004.09.043.
Nuclear transport carriers interact with proteins of the nuclear pore complex (NPC) to transport their cargo across the nuclear envelope. One such carrier is nuclear transport factor 2 (NTF2), whose import cargo is the small GTPase Ran. A domain highly homologous to the small NTF2 protein (14kDa) is also found in a number of additional proteins, which together make up the NTF2 domain containing superfamily of proteins. Using structural, computational and biochemical analysis we have identified a functional site that is present throughout this superfamily, and our results indicate that this site functions as an NPC binding site in NTF2. Previously we showed that a D23A mutant of NTF2 exhibits increased affinity for the NPC. The mechanism of this mutation, however, was unknown as this region of NTF2 had not been implicated in binding to NPC proteins. Here we show that the D23A mutation in NTF2 does not result in gross structural changes affecting other known NPC binding sites. Instead, the D23 residue is located in an evolutionarily important region in the NTF2 domain containing superfamily, that in NTF2, is involved in binding to the NPC.
核转运载体与核孔复合体(NPC)的蛋白质相互作用,以将其货物运输穿过核膜。其中一种载体是核转运因子2(NTF2),其输入货物是小GTP酶Ran。在许多其他蛋白质中也发现了一个与小NTF2蛋白(14kDa)高度同源的结构域,这些蛋白质共同构成了包含蛋白质超家族的NTF2结构域。通过结构、计算和生化分析,我们确定了一个在整个超家族中都存在的功能位点,我们的结果表明该位点在NTF2中作为NPC结合位点发挥作用。此前我们表明,NTF2的D23A突变体对NPC表现出增加的亲和力。然而,这种突变的机制尚不清楚,因为NTF2的这一区域尚未涉及与NPC蛋白的结合。在这里我们表明,NTF2中的D23A突变不会导致影响其他已知NPC结合位点的总体结构变化。相反,D23残基位于包含超家族的NTF2结构域中一个进化上重要的区域,在NTF2中,该区域参与与NPC的结合。