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F-Box Protein Grr1 Interacts with Phosphorylated Targets via the Cationic Surface of Its Leucine-Rich Repeat

机译:F框蛋白Grr1通过其富含亮氨酸的重复阳离子表面与磷酸化的目标进行交互。

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摘要

The flexibility and specificity of ubiquitin-dependent proteolysis are mediated, in part, by the E3 ubiquitin ligases. One class of E3 enzymes, SKp1/cullin/F-box protein (SCF), derives its specificity from F-box proteins, a heterogeneous family of adapters for target protein recognition. Grr1, the F-box component of SCFGrr1, mediates the interaction with phosphorylated forms of the G1 cyclins Cln1 and Cln2. We show that binding of Cln2 by SCFGrr1 was dependent upon its leucine-rich repeat (LRR) domain and its carboxy terminus. Our structural model for the Grr1 LRR predicted a high density of positive charge on the concave surface of the characteristic horseshoe structure. We hypothesized that specific basic residues on the predicted concave surface are important for recognition of phosphorylated Cln2. We show that point mutations that converted the basic residues on the concave surface but not those on the convex surface to neutral or acidic residues interfered with the capacity of Grr1 to bind to Cln2. The same mutations resulted in the stabilization of Cln2 and Gic2 and also in a spectrum of phenotypes characteristic of inactivation of GRR1, including hyperpolarization and enhancement of pseudohyphal growth. It was surprising that the same residues were not important for the role of Grr1 in nutrient-regulated transcription of HXT1 or AGP1. We concluded that the cationic nature of the concave surface of the Grr1 LRR is critical for the recognition of phosphorylated targets of SCFGrr1 but that other properties of Grr1 are required for its other functions.
机译:泛素依赖性蛋白水解的灵活性和特异性部分由E3泛素连接酶介导。一类E3酶SKp1 / cullin / F-box蛋白(SCF)从F-box蛋白(一种用于靶标蛋白质识别的异质衔接子家族)中获得特异性。 Grr1,SCFGrr1的F盒组件,介导与G1细胞周期蛋白Cln1和Cln2磷酸化形式的相互作用。我们显示SCFGrr1对Cln2的结合取决于其富含亮氨酸的重复(LRR)域和其羧基末端。我们的Grr1 LRR的结构模型预测了特征性马蹄形结构的凹表面上的高正电荷密度。我们假设预测的凹表面上的特定碱性残基对于识别磷酸化的Cln2很重要。我们显示点突变将凹表面上的基本残基转化成中性或酸性残基,而不将凸表面上的基本残基转化为干扰Grr1与Cln2结合的能力。相同的突变导致Cln2和Gic2的稳定,还导致GRR1失活的一系列表型特征,包括超极化和假菌丝生长增强。令人惊讶的是,相同的残基对于Grr1在HXT1或AGP1的营养调节转录中的作用并不重要。我们得出结论,Grr1 LRR凹面的阳离子性质对于识别SCFGrr1的磷酸化靶标至关重要,但是Grr1的其他功能需要其其他功能。

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