Percipalle P, Clarkson W D, Kent H M, Rhodes D, Stewart M
MRC Laboratory of Molecular Biology, Cambridge, England.
J Mol Biol. 1997 Mar 7;266(4):722-32. doi: 10.1006/jmbi.1996.0801.
We have used in vitro binding assays to examine specific interactions between a number of cytoplasmic and nuclear pore proteins involved in nuclear protein import in vertebrates. We demonstrate that nuclear transport factor 2 (NTF2), nucleoporin p62 and the Ras-like GTPase Ran bind to the importin heterodimer via its beta subunit. The binding behaviour of p62 truncation mutants indicated that importin-beta interacts primarily with the alpha-helical coiled-coil rod domain of nucleoporin p62 and not with the N-terminal domain that contains a number of degenerate repeats based on the xFxFG sequence motif. The binding of Ran to importin-beta was sensitive to its nucleotide state, with RanGTP binding strongly, whereas RanGDP binding could not be detected using our assay conditions. RanGTP, but not RanGDP, was able to displace p62 bound to the importin alpha/beta complex, suggesting that the binding sites for p62 and RanGTP on importin-beta overlap. Moreover, RanGTP, but not RanGDP, weakened the interaction between importin-alpha and importin-beta in a concentration-dependent manner. NTF2 bound to the importin heterodimer but did not displace p62, suggesting that the NTF2 and p62 binding sites on importin-beta do not overlap. The set of interactions we observed was not altered by the binding of NLS-containing substrates such as transcription factor IIIA to the importin heterodimer. Our results are consistent with models for nuclear protein import in which Ran nucleotide exchange modulates the binding of the importin-substrate complexes during translocation through nuclear pore complexes.
我们已利用体外结合试验来检测脊椎动物中参与核蛋白输入的多种细胞质和核孔蛋白之间的特异性相互作用。我们证明核转运因子2(NTF2)、核孔蛋白p62和类Ras GTP酶Ran通过其β亚基与输入蛋白异二聚体结合。p62截短突变体的结合行为表明,输入蛋白β主要与核孔蛋白p62的α螺旋卷曲螺旋杆结构域相互作用,而不与包含基于xFxFG序列基序的多个简并重复序列的N端结构域相互作用。Ran与输入蛋白β的结合对其核苷酸状态敏感,RanGTP强烈结合,而在我们的试验条件下未检测到RanGDP的结合。RanGTP而非RanGDP能够取代与输入蛋白α/β复合物结合的p62,这表明输入蛋白β上p62和RanGTP的结合位点重叠。此外,RanGTP而非RanGDP以浓度依赖的方式减弱了输入蛋白α与输入蛋白β之间的相互作用。NTF2与输入蛋白异二聚体结合但未取代p62,这表明输入蛋白β上NTF2和p62的结合位点不重叠。我们观察到的这组相互作用不会因含核定位信号的底物(如转录因子IIIA)与输入蛋白异二聚体的结合而改变。我们的结果与核蛋白输入模型一致,在该模型中,Ran核苷酸交换在通过核孔复合物转运过程中调节输入蛋白 - 底物复合物的结合。