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Molecular mechanism of ubiquitin recognition by GGA3 GAT domain.

机译:GGA3 GAT域识别泛素的分子机制。

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摘要

GGA (Golgi-localizing, gamma-adaptin ear domain homology, ARF-binding) proteins, which constitute a family of clathrin coat adaptor proteins, have recently been shown to be involved in the ubiquitin-dependent sorting of receptors, through the interaction between the C-terminal three-helix-bundle of the GAT (GGA and Tom1) domain (C-GAT) and ubiquitin. We report here the crystal structure of human GGA3 C-GAT in complex with ubiquitin. A hydrophobic patch on C-GAT helices alpha1 and alpha2 forms a binding site for the hydrophobic Ile44 surface of ubiquitin. Two distinct orientations of ubiquitin Arg42 determine the shape and the charge distribution of ubiquitin Ile44 surface, leading to two different binding modes. Biochemical and NMR data strongly suggest another hydrophobic binding site on C-GAT helices alpha2 and alpha3, opposite to the first binding site, also binds ubiquitin although weakly. The double-sided ubiquitin binding provides the GAT domain with higher efficiency in recognizing ubiquitinatedreceptors for lysosomal receptor degradation.
机译:组成网格蛋白外壳衔接蛋白家族的GGA(高尔基体定位,γ-adaptin耳域同源性,ARF结合)蛋白最近被证明通过受体之间的相互作用参与泛素依赖性受体的分选。 GAT(GGA和Tom1)域(C-GAT)和泛素的C末端三螺旋束。我们在这里报告了与泛素复合的人GGA3 C-GAT的晶体结构。 C-GAT螺旋alpha1和alpha2上的疏水补丁形成泛素的疏水Ile44表面的结合位点。遍在蛋白Arg42的两个不同方向决定了遍在蛋白Ile44表面的形状和电荷分布,从而导致两种不同的结合模式。生化和NMR数据强烈表明,与第一个结合位点相反,C-GAT螺旋alpha2和alpha3上的另一个疏水结合位点也与泛素结合,尽管作用较弱。双面泛素结合为识别溶酶体受体降解的泛素化受体提供了更高的效率。

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