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Structural basis for the selection of glycosylated substrates by SCF~(Fbs1) ubiquitin ligase

机译:SCF〜(Fbs1)泛素连接酶选择糖基化底物的结构基础

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摘要

The ubiquitin ligase complex SCF~(Fbs1), which contributes to the ubiquitination of glycoproteins, is involved in the endoplasmic reticulum-associated degradation pathway. In SCF ubiquitin ligases, a diverse array of F-box proteins confers substrate specificity. Fbs1/Fbx2, a member of the F-box protein family, recognizes high-mannose oligosaccharides. To elucidate the structural basis of SCF~(Fbs1) function, we determined the crystal structures of the Skp1-Fbs1 complex and the sugar-binding domain (SBD) of the Fbs1-glycoprotein complex. The mechanistic model indicated by the structures appears to be well conserved among the SCF ubiquitin ligases. The structure of the SBD-glycoprotein complex indicates that the SBD primarily recognizes Man_3GlcNAc_2, thereby explaining the broad activity of the enzyme against various glycoproteins. Comparison of two crystal structures of the Skp1-Fbs1 complex revealed the relative motion of a linker segment between the F-box and the SBD domains, which might underlie the ability of the complex to recognize different acceptor lysine residues for ubiquitination.
机译:泛素连接酶复合物SCF〜(Fbs1)参与糖蛋白的泛素化,参与内质网相关的降解途径。在SCF泛素连接酶中,各种各样的F-box蛋白可赋予底物特异性。 F-box蛋白家族的成员Fbs1 / Fbx2识别高甘露糖寡糖。为了阐明SCF〜(Fbs1)功能的结构基础,我们确定了Skp1-Fbs1复合物的晶体结构和Fbs1-糖蛋白复合物的糖结合结构域(SBD)。由结构指示的机制模型似乎在SCF泛素连接酶中保存良好。 SBD-糖蛋白复合物的结构表明,SBD主要识别Man_3GlcNAc_2,从而解释了该酶对各种糖蛋白的广泛活性。比较Skp1-Fbs1复合物的两个晶体结构,发现F-box结构域和SBD结构域之间接头片段的相对运动,这可能是复合物识别泛素化的不同受体赖氨酸残基的能力的基础。

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