Patel Samir S, Rexach Michael F
Department of Molecular, Cell, & Developmental Biology, University of California Santa Cruz, Santa Cruz, CA 95064, USA.
Mol Cell Proteomics. 2008 Jan;7(1):121-31. doi: 10.1074/mcp.M700407-MCP200. Epub 2007 Sep 26.
A highly sensitive, equilibrium-based binding assay termed "Bead Halo" was used here to identify and characterize interactions involving components of the nucleocytoplasmic transport machinery in eukaryotes. Bead Halo uncovered novel interactions between the importin Kap95 and the nucleoporins (nups) Nic96, Pom34, Gle1, Ndc1, Nup84, and Seh1, which likely occur during nuclear pore complex biogenesis. Bead Halo was also used to characterize the molecular determinants for binding between Kap95 and the family of nups that feature multiple phenylalanine-glycine motifs (FG nups). Binding was sensitive to the number of FG motifs present and to amino acid (AA) residues immediately flanking the FG motifs. Also, binding was reduced but not abolished when phenylalanine residues in all FG motifs were replaced by tyrosine or tryptophan. These results suggest flexibility in the binding pockets of Kap95 and synergism in binding FG motifs. The hypothesis that Nup53 and Nup59 bind directly to membranes through a C-terminal amphipathic alpha helix and to DNA via an RNA recognition motif domain was also tested and validated using Bead Halo. The results support a role for these nups in nuclear pore membrane biogenesis and in gene expression. Finally, Bead Halo detected binding of the nups Gle1, Nup60, and Nsp1 to phospholipid bilayers. This may reflect the known interaction between Gle1 and phosphoinositides and suggests similar interactions for Nup60 and Nsp1. As the Bead Halo assay detected molecular interactions in cell lysates, as well as between purified components, it can be adapted for large-scale proteomic studies using automated robotics and microscopy.
本文采用一种名为“珠晕”的高灵敏度、基于平衡的结合测定法,来鉴定和表征真核生物中涉及核质运输机制成分的相互作用。珠晕法揭示了输入蛋白Kap95与核孔蛋白(nups)Nic96、Pom34、Gle1、Ndc1、Nup84和Seh1之间的新相互作用,这些相互作用可能发生在核孔复合体生物发生过程中。珠晕法还用于表征Kap95与具有多个苯丙氨酸 - 甘氨酸基序(FG nups)的核孔蛋白家族之间结合的分子决定因素。结合对存在的FG基序数量以及FG基序紧邻的氨基酸(AA)残基敏感。此外,当所有FG基序中的苯丙氨酸残基被酪氨酸或色氨酸取代时,结合减少但未消除。这些结果表明Kap95结合口袋具有灵活性,且在结合FG基序时具有协同作用。还使用珠晕法测试并验证了Nup53和Nup59通过C端两亲性α螺旋直接与膜结合并通过RNA识别基序结构域与DNA结合的假说。结果支持了这些核孔蛋白在核孔膜生物发生和基因表达中的作用。最后,珠晕法检测到核孔蛋白Gle1、Nup60和Nsp1与磷脂双层的结合。这可能反映了已知的Gle1与磷酸肌醇之间的相互作用,并表明Nup60和Nsp1也有类似相互作用。由于珠晕测定法可检测细胞裂解物中以及纯化成分之间的分子相互作用,因此它可适用于使用自动化机器人技术和显微镜的大规模蛋白质组学研究。