首页> 外文期刊>Journal of Cell Science >An essential function of Grr1 for the degradation of Cln2 is to act as a binding core that links Cln2 to Skp1
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An essential function of Grr1 for the degradation of Cln2 is to act as a binding core that links Cln2 to Skp1

机译:Grr1对Cln2降解的基本功能是充当将Cln2与Skp1连接的结合核心

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In budding yeast, SCF complexes, composed of Skp1, Cdc53 and one of the F-box proteins, have been implicated in Cdc34-dependent ubiquitination, Grr1, which is required for degradation of G(1) cyclins Cln1 and Cln2 as well as for regulation of glucose repression, is an F-box protein and interacts with Skp1 through the F-box motif, Grr1 also interacts in vitro with phosphorylated Cln1. and Cln2, However, ubiquitination of Cln1 has not been successful in an in vitro reconstituted system. In this study, domain analysis was performed to understand the role of Grr1 in the degradation of Cln2, Grr1 has another motif, leucine-rich repeats (LRR), in addition to the F-box, We found that the LRR is a domain for Cln2 binding. A deletion of half of the LRR abolished the interaction of Grr1 with phosphorylated Cln2 but not with Skp1 in vivo, and a deletion of the F-box abolished the interaction of Grr1 with Skp1 but not with phosphorylated Cln2 in vivo, Based on these results, we constructed grr1 mutants that are defective in association with either Skp1 or Cln2. Cln2 was highly stabilized and accumulated in the phosphorylated forms in the mutant cells. Furthermore, Skp1 associated in vivo with phosphorylated Cln2 in a Grr1-dependent manner. These data suggest that Grr1 is required for degradation of Cln2 through linking phosphorylated Cln2 to Skp1 in a SCFGrr1 complex. [References: 37]
机译:在出芽的酵母中,由Skp1,Cdc53和一种F-box蛋白组成的SCF复合物与Cdc34依赖的泛素化Grr1有关,Grr1是降解G(1)细胞周期蛋白Cln1和Cln2以及调节葡萄糖阻遏作用,是一种F-box蛋白,通过F-box基序与Skp1相互作用,Grr1在体外也与磷酸化的Cln1相互作用。然而,在体外重构系统中,Cln1的泛素化并未成功。在这项研究中,进行了域分析,以了解Grr1在Cln2降解中的作用,Grr1除F-box外还具有另一个基序,即富含亮氨酸的重复序列(LRR),我们发现LRR是一个Cln2结合。根据这些结果,删除一半的LRR可以消除体内Grr1与磷酸化的Cln2的相互作用,但不能消除与Skp1的相互作用,而F-box的缺失可以消除体内的Grr1与Skp1的相互作用,但不能消除与磷酸化的Cln2的相互作用。我们构建了与Skp1或Cln2相关联的缺陷的grr1突变体。 Cln2被高度稳定化并以突变形式的磷酸化形式积累。此外,Skp1在体内与Grr1依赖的方式与磷酸化的Cln2相关联。这些数据表明,通过将磷酸化的Cln2连接到SCFGrr1复合物中的Skp1,Grr1是降解Cln2所必需的。 [参考:37]

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