Camus C, Geymonat M, Garreau H, Baudet-Nessler S, Jacquet M
Laboratoire Information Génétique et Développement, Institut de Génétique et Microbiologie, URA CNRS 2225, Université Paris-Sud, France.
Eur J Biochem. 1997 Jul 15;247(2):703-8. doi: 10.1111/j.1432-1033.1997.00703.x.
The oligomerization state of Cdc25p, the guanine nucleotide exchange factor for ras from yeast, was analyzed using different complementary approaches. The two-hybrid system showed that the C-terminal part of Cdc25p (Cdc25-Ct) can interact with itself but also with Sdc25p-Ct, the corresponding part of Sdc25p, the other guanine exchange factor from yeast. The homotropic interaction of Cdc25p-Ct has been confirmed in yeast using immunoprecipitation experiments with epitope-tagged and beta-galactosidase-fused polypeptides. No other component was required for this interaction, since dimerization was shown to occur with material synthesized in vitro. The size of Cdc25-Ct produced in Escherichia coli has been directly measured on gel filtration columns and corresponds to a dimer. The dimerization domain is localized in the same part of the molecule as the catalytic domain and the portion responsible for membrane localization. The biological relevance of dimerization is still an open question, however by allowing heterodimerization with Sdc25p it could permit a more complex combinatorial regulation of ras in yeast.
利用不同的互补方法分析了酵母中Ras的鸟嘌呤核苷酸交换因子Cdc25p的寡聚化状态。双杂交系统表明,Cdc25p的C末端部分(Cdc25-Ct)可以与自身相互作用,也可以与Sdc25p-Ct相互作用,Sdc25p-Ct是酵母中另一种鸟嘌呤交换因子Sdc25p的相应部分。通过使用表位标签和β-半乳糖苷酶融合多肽的免疫沉淀实验,在酵母中证实了Cdc25-Ct的同型相互作用。这种相互作用不需要其他成分,因为已证明在体外合成的物质会发生二聚化。在凝胶过滤柱上直接测量了大肠杆菌中产生的Cdc25-Ct的大小,其对应于二聚体。二聚化结构域位于分子中与催化结构域和负责膜定位的部分相同的区域。然而,二聚化的生物学相关性仍然是一个悬而未决的问题,通过允许与Sdc25p异源二聚化,它可能允许对酵母中的Ras进行更复杂的组合调控。