Callaghan J, Simonsen A, Gaullier J M, Toh B H, Stenmark H
Department of Biochemistry, The Norwegian Radium Hospital, Montebello, N-0310 Oslo, Norway.
Biochem J. 1999 Mar 1;338 ( Pt 2)(Pt 2):539-43.
EEA1, an early-endosomal protein originally identified as an autoantigen, is essential for endocytic membrane fusion. It interacts with early endosomes via binding to the membrane lipid phosphatidylinositol 3-phosphate (PtdIns3P) and the active form of the small GTPase Rab5. Most of the EEA1 sequence contains heptad repeats characteristic of proteins involved in coiled-coil protein-protein interactions. Here we have investigated the ability of EEA1 to self-interact. Crosslinking of cytosolic and recombinant EEA1 resulted in the disappearance of the 180-kDa monomer in SDS/PAGE and the strong appearance of a approximately 350-kDa crosslinked product. Glycerol gradient centrifugation experiments indicated that native EEA1 had the same hydrodynamic properties as the approximately 350-kDa crosslinked complex. Two-hybrid analysis indicated that N- and C-terminal fragments of EEA1 can interact with themselves, but not with each other, suggesting that EEA1 forms parallel coiled-coil dimers. The ability of the C-terminus of EEA1 to dimerize correlates with its ability to bind to Rab5 and early endosomes, whereas its binding to PtdIns3P is independent of dimerization. These data enable us to propose a model for the quaternary structure of EEA1.
EEA1是一种最初被鉴定为自身抗原的早期内体蛋白,对胞吞膜融合至关重要。它通过与膜脂磷脂酰肌醇3-磷酸(PtdIns3P)和小GTP酶Rab5的活性形式结合,与早期内体相互作用。EEA1的大部分序列包含参与卷曲螺旋蛋白-蛋白相互作用的蛋白质所特有的七肽重复序列。在这里,我们研究了EEA1自我相互作用的能力。对胞质和重组EEA1进行交联,导致SDS/PAGE中180 kDa单体消失,并强烈出现约350 kDa的交联产物。甘油梯度离心实验表明,天然EEA1具有与约350 kDa交联复合物相同的流体动力学性质。双杂交分析表明,EEA1的N端和C端片段可以自身相互作用,但不能相互作用,这表明EEA1形成平行卷曲螺旋二聚体。EEA1 C端二聚化的能力与其结合Rab5和早期内体的能力相关,而其与PtdIns3P的结合则与二聚化无关。这些数据使我们能够提出一个EEA1四级结构的模型。