Chi N C, Adam S A
Department of Cell and Molecular Biology, Northwestern University Medical School, Chicago, Illinois 60611, USA.
Mol Biol Cell. 1997 Jun;8(6):945-56. doi: 10.1091/mbc.8.6.945.
The interaction of the nuclear protein import factor p97 with the nuclear localization sequence (NLS) receptor, the nuclear pore complex, and Ran/TC4 is important for coordinating the events of protein import to the nucleus. We have mapped the binding domains on p97 for the NLS receptor and the nuclear pore. The NLS receptor-binding domain of p97 maps to the C-terminal 60% of the protein between residues 356 and 876. The pore complex-binding domain of p97 maps to residues 152-352. The pore complex-binding domain overlaps the Ran-GTP- and Ran-GDP-binding domains on p97, but only Ran-GTP competes for docking in permeabilized cells. The N-ethylmaleimide sensitivity of the p97 for docking was investigated and found to be due to inhibition of p97 binding to the pore complex and to the NLS receptor. Site-directed mutagenesis of conserved cysteine residues in the pore- and receptor-binding domains identified two cysteines, C223 and C228, that were required for p97 to bind the nuclear pore. Inhibition studies on docking and accumulation of a NLS protein provided additional evidence that the domains identified biochemically are the functional domains involved in protein import. Together, these results suggest that Ran-GTP dissociates the receptor complex and prevents p97 binding to the pore by inducing a conformational change in the structure of p97 rather than simple competition for binding sites.
核蛋白输入因子p97与核定位序列(NLS)受体、核孔复合体以及Ran/TC4之间的相互作用对于协调蛋白质向细胞核的输入过程至关重要。我们已经绘制了p97上与NLS受体和核孔结合的结构域。p97的NLS受体结合结构域位于蛋白质C端60%,即356至876位氨基酸之间。p97的孔复合体结合结构域位于152 - 352位氨基酸。孔复合体结合结构域与p97上的Ran - GTP和Ran - GDP结合结构域重叠,但只有Ran - GTP能在通透细胞中竞争对接。研究了p97对接的N - 乙基马来酰亚胺敏感性,发现这是由于p97与孔复合体和NLS受体的结合受到抑制。对孔和受体结合结构域中保守半胱氨酸残基进行定点诱变,确定了两个半胱氨酸C223和C228,它们是p97结合核孔所必需的。对NLS蛋白对接和积累的抑制研究提供了额外证据,表明通过生物化学方法鉴定的这些结构域是参与蛋白质输入的功能结构域。总之,这些结果表明Ran - GTP通过诱导p97结构的构象变化而非简单竞争结合位点来解离受体复合物并阻止p97与孔结合。