Zhai Peng, He Xiangyuan, Liu Jian, Wakeham Nancy, Zhu Guangyu, Li Guangpu, Tang Jordan, Zhang Xuejun C
Crystallography Research Program, Oklahoma Medical Research Foundation, 825 NE 13(th) Street, Oklahoma City, Oklahoma 73104, USA.
Biochemistry. 2003 Dec 2;42(47):13901-8. doi: 10.1021/bi035392b.
GGA proteins regulate clathrin-coated vesicle trafficking by interacting with multiple proteins during vesicle assembly. As part of this process, the GAT domain of GGA is known to interact with both ARF and Rabaptin-5. Particularly, the GAT domains of GGA1 and -2, but not of GGA3, specifically bind with a coiled-coil region of Rabaptin-5. Rabaptin-5 interacts with Rab5 and is an essential component of the fusion machinery for targeting endocytic vesicles to early endosomes. The recently determined crystal structure of the GGA1 GAT domain has provided insights into its interactions with partner proteins. Here, we describe mutagenesis studies on the GAT-Rabaptin-5 interaction. The results demonstrate that a hydrophobic surface patch on the C-terminal three-helix bundle motif of the GAT domain is directly involved in Rabaptin-5 binding. A GGA3-like mutation, N284S, in this Rabaptin-5 binding patch of GGA1 led to a reduced level of Rabaptin-5 binding. Furthermore, a reversed mutation, S293N, in GGA3 partially establishes Rabaptin-5 binding ability in its GAT domain. These results provide a structural explanation for the binding affinity difference among GGA proteins. The current results also suggest that the binding of GAT to Rabaptin-5 is independent of its interaction with ARF.
GGA蛋白通过在囊泡组装过程中与多种蛋白质相互作用来调节网格蛋白包被囊泡的运输。作为这一过程的一部分,已知GGA的GAT结构域可与ARF和Rabaptin-5相互作用。特别是,GGA1和-2的GAT结构域,而非GGA3的GAT结构域,可特异性地与Rabaptin-5的一个卷曲螺旋区域结合。Rabaptin-5与Rab5相互作用,是将内吞囊泡靶向早期内体的融合机制的重要组成部分。最近确定的GGA1 GAT结构域的晶体结构为其与伴侣蛋白的相互作用提供了见解。在这里,我们描述了关于GAT-Rabaptin-5相互作用的诱变研究。结果表明,GAT结构域C端三螺旋束基序上的一个疏水表面斑块直接参与Rabaptin-5的结合。GGA1的这个Rabaptin-5结合斑块中的一个类似GGA3的突变N284S导致Rabaptin-5结合水平降低。此外,GGA3中的一个反向突变S293N在其GAT结构域中部分建立了Rabaptin-5结合能力。这些结果为GGA蛋白之间结合亲和力的差异提供了结构解释。目前的结果还表明,GAT与Rabaptin-5的结合独立于其与ARF的相互作用。