Talarek Nicolas, Balguerie Axelle, Aigle Michel, Durrens Pascal
IBGC-CNRS UMR 5095, Bordeaux, France.
Cell Biochem Funct. 2005 Jul-Aug;23(4):253-66. doi: 10.1002/cbf.1146.
The BAR proteins are a well-conserved family of proteins including Rvsp in yeast, amphiphysins and Bin proteins in mammals. In yeast, as in mammals, BAR proteins are known to be implicated in vesicular traffic. The Gyp5p (Ypl249p) and Ymr192p proteins interact in two-hybrid tests with both Rvs161p and Rvs167p. Gyp5p is a Ypt/Rab-specific GAP and Ymr192p is highly similar to Gyp5p. To specify the interaction between Rvsp and Gyp5p, we used two-hybrid tests to determine the domains necessary for these interactions. The specific SH3 domain of Rvs167p interacted with the N-terminal domain of Gyp5p. Moreover, Gyp5p could form a homodimer. Fus2 protein is a specific partner of Rvs161p in two-hybrid tests. To characterize the functional relationships between these five proteins, we have studied cellular phenotypes in single, double and triple mutant strains for which rvs mutants present defects, such as polarity, cell fusion and meiosis. Phenotypic analysis showed that Gyp5p, Ymr192p and Fus2p were involved in bipolar budding pattern and in meiosis. Specific epistasis or suppressive phenomena were found between the five mutations. Finally, The Gyp5p-GFP fusion protein was localized at the bud tip during apical growth and at the mother-bud neck during cytokinesis. Moreover, Rvs167p and Rvs161p were shown to be essential for the correct localization of Gyp5p. Altogether, these data support the hypothesis that both Rvsp proteins act in vesicular traffic through physical and functional interactions with Ypt/Rab regulators.
BAR蛋白是一个保守性良好的蛋白家族,包括酵母中的Rvsp、哺乳动物中的发动蛋白和Bin蛋白。在酵母中,与在哺乳动物中一样,已知BAR蛋白与囊泡运输有关。Gyp5p(Ypl249p)和Ymr192p蛋白在双杂交试验中与Rvs161p和Rvs167p都有相互作用。Gyp5p是一种Ypt/Rab特异性GAP,Ymr192p与Gyp5p高度相似。为了明确Rvsp与Gyp5p之间的相互作用,我们使用双杂交试验来确定这些相互作用所需的结构域。Rvs167p的特定SH3结构域与Gyp5p的N端结构域相互作用。此外,Gyp5p可以形成同二聚体。在双杂交试验中,Fus2蛋白是Rvs161p的特异性伴侣。为了表征这五种蛋白之间的功能关系,我们研究了单突变、双突变和三突变菌株的细胞表型,rvs突变体在这些菌株中存在极性、细胞融合和减数分裂等缺陷。表型分析表明,Gyp5p、Ymr192p和Fus2p参与了双极出芽模式和减数分裂。在这五个突变之间发现了特定的上位性或抑制现象。最后,Gyp5p-GFP融合蛋白在顶端生长期间定位于芽尖,在胞质分裂期间定位于母-芽颈部。此外,Rvs167p和Rvs161p被证明对Gyp5p的正确定位至关重要。总之,这些数据支持这样的假设,即两种Rvsp蛋白通过与Ypt/Rab调节因子的物理和功能相互作用在囊泡运输中发挥作用。