Simonsen A, Lippé R, Christoforidis S, Gaullier J M, Brech A, Callaghan J, Toh B H, Murphy C, Zerial M, Stenmark H
Department of Biochemistry, The Norwegian Radium Hospital, Montebello, Oslo.
Nature. 1998 Jul 30;394(6692):494-8. doi: 10.1038/28879.
GTPases and lipid kinases regulate membrane traffic along the endocytic pathway by mechanisms that are not completely understood. Fusion between early endosomes requires phosphatidylinositol-3-OH kinase (PI(3)K) activity as well as the small GTPase Rab5. Excess Rab5-GTP complex restores endosome fusion when PI(3)K is inhibited. Here we identify the early-endosomal autoantigen EEA1 which binds the PI(3)K product phosphatidylinositol-3-phosphate, as a new Rab5 effector that is required for endosome fusion. The association of EEA1 with the endosomal membrane requires Rab5-GTP and PI(3)K activity, and excess Rab5-GTP stabilizes the membrane association of EEA1 even when PI(3)K is inhibited. The identification of EEA1 as a direct Rab5 effector provides a molecular link between PI(3)K and Rab5, and its restricted distribution to early endosomes indicates that EEA1 may confer directionality to Rab5-dependent endocytic transport.
GTP 酶和脂质激酶通过尚未完全明确的机制调节沿内吞途径的膜运输。早期内体之间的融合需要磷脂酰肌醇 -3- 羟基激酶(PI(3)K)活性以及小 GTP 酶 Rab5。当 PI(3)K 被抑制时,过量的 Rab5-GTP 复合物可恢复内体融合。在此,我们鉴定出早期内体自身抗原 EEA1,它结合 PI(3)K 的产物磷脂酰肌醇 -3- 磷酸,是内体融合所需的一种新的 Rab5 效应蛋白。EEA1 与内体膜的结合需要 Rab5-GTP 和 PI(3)K 活性,并且即使在 PI(3)K 被抑制时,过量的 Rab5-GTP 也能稳定 EEA1 与膜的结合。将 EEA1 鉴定为直接的 Rab5 效应蛋白揭示了 PI(3)K 与 Rab5 之间的分子联系,并且其在内体中的分布局限表明 EEA1 可能赋予 Rab5 依赖性内吞运输方向性。