Ho A K, Shen T X, Ryan K J, Kiseleva E, Levy M A, Allen T D, Wente S R
Department of Cell Biology and Physiology, Washington University School of Medicine, St. Louis, Missouri 63110, USA.
Mol Cell Biol. 2000 Aug;20(15):5736-48. doi: 10.1128/MCB.20.15.5736-5748.2000.
The yeast Saccharomyces cerevisiae nucleoporin Nup116p serves as a docking site for both nuclear import and export factors. However, the mechanism for assembling Nup116p into the nuclear pore complex (NPC) has not been resolved. By conducting a two-hybrid screen with the carboxy (C)-terminal Nup116p region as bait, we identified Nup82p. The predicted coiled-coil region of Nup82p was not required for Nup116p interaction, making the binding requirements distinct from those for the Nsp1p-Nup82p-Nup159p subcomplex (N. Belgareh, C. Snay-Hodge, F. Pasteau, S. Dagher, C. N. Cole, and V. Doye, Mol. Biol. Cell 9:3475-3492, 1998). Immunoprecipitation experiments using yeast cell lysates resulted in the coisolation of a Nup116p-Nup82p subcomplex. Although the absence of Nup116p had no effect on the NPC localization of Nup82p, overexpression of C-terminal Nup116p in a nup116 null mutant resulted in Nup82p mislocalization. Moreover, NPC localization of Nup116p was specifically diminished in a nup82-Delta108 mutant after growth at 37 degrees C. Immunoelectron microscopy analysis showed Nup116p was localized on both the cytoplasmic and nuclear NPC faces. Its distribution was asymmetric with the majority at the cytoplasmic face. Taken together, these results suggest that Nup82p and Nup116p interact at the cytoplasmic NPC face, with nucleoplasmic Nup116p localization utilizing novel binding partners.
酿酒酵母核孔蛋白Nup116p作为核输入和输出因子的停靠位点。然而,Nup116p组装到核孔复合体(NPC)中的机制尚未得到解决。通过以羧基(C)末端Nup116p区域为诱饵进行双杂交筛选,我们鉴定出了Nup82p。Nup82p的预测卷曲螺旋区域对于Nup116p相互作用并非必需,这使得其结合要求不同于Nsp1p-Nup82p-Nup159p亚复合体(N. 贝尔加雷、C. 斯奈-霍奇、F. 帕斯托、S. 达盖尔、C. N. 科尔和V. 多耶,《分子生物学细胞》9:3475-3492,1998年)。使用酵母细胞裂解物进行的免疫沉淀实验导致共分离出一个Nup116p-Nup82p亚复合体。虽然缺少Nup116p对Nup82p在NPC中的定位没有影响,但在nup116缺失突变体中过表达C末端Nup116p会导致Nup82p定位错误。此外,在37摄氏度生长后,nup82-Delta108突变体中Nup116p在NPC中的定位会特异性降低。免疫电子显微镜分析表明,Nup116p定位于NPC的细胞质面和核面。其分布不对称,大部分位于细胞质面。综上所述,这些结果表明Nup82p和Nup116p在NPC的细胞质面相互作用,核质中的Nup116p定位利用了新的结合伙伴。