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首页> 外文期刊>Acta crystallographica. Section F, Structural biology communications >Structural analysis of a function-associated loop mutant of the substrate-recognition domain of Fbs1 ubiquitin ligase
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Structural analysis of a function-associated loop mutant of the substrate-recognition domain of Fbs1 ubiquitin ligase

机译:FBS1泛素连接酶底物识别结构域的功能相关环突变体的结构分析

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The SCF ubiquitin ligase comprises four components: Skp1, Cul1, Rbx1 and a variable-subunit F-box protein. The F-box protein Fbs1, which recognizes the N-linked glycoproteins, is involved in the endoplasmic reticulum-associated degradation pathway. Although FBG3, another F-box protein, shares 51% sequence identity with Fbs1, FBG3 does not bind glycoproteins. To investigate the sequence-structure relationship of the substrate-binding pocket, the crystal structure of a mutant substrate-binding domain of Fbs1 in which the six nonconserved regions (beta 1, beta 2-beta 3, beta 3-beta 4, beta 5-beta 6, beta 7-beta 8 and beta 9-beta 10) of Fbs1 were substituted with those of FBG3 was determined. The substrate-binding pocket of this model exhibits structural features that differ from those of Fsb1.
机译:SCF泛素连接酶包含四种组分:SKP1,CUL1,RBX1和可变亚基F箱蛋白。 识别n键合糖蛋白的F型盒蛋白FBS1参与内质网相关的降解途径。 虽然FBG3,另一个F箱蛋白,与FBS1共用51%序列同一性,但FBG3不结合糖蛋白。 为了研究基板结合口袋的序列结构关系,FBS1的突变族底物结合结构域的晶体结构,其中六个非可介质区域(β1,β2-β3,β3-β4,β5 测定了FBS1的β6,β7-β8和β9-β10)被FBG3取代。 该模型的基材结合袋表现出与FSB1的结构特征不同。

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