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The yeast homologue of the microtubule-associated protein Lis1 interacts with the sumoylation machinery and a SUMO-targeted ubiquitin ligase

机译:微管相关蛋白Lis1的酵母同源物与sumoylation机制和以SUMO为目标的泛素连接酶相互作用

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Microtubules and microtubule-associated proteins are fundamental for multiple cellular processes, including mitosis and intracellular motility, but the factors that control microtubule-associated proteins (MAPs) are poorly understood. Here we show that two MAPs-the CLIP-170 homologue Bik1p and the Lis1 homologue Pac1p-interact with several proteins in the sumoylation pathway. Bik1p and Pac1p interact with Smt3p, the yeast SUMO; Ubc9p, an E2; and Nfi1p, an E3. Bik1p interacts directly with SUMO in vitro, and overexpression of Smt3p and Bik1p results in its in vivo sumoylation. Modified Pac1p is observed when the SUMO protease Ulp1p is inactivated. Both ubiquitin and Smt3p copurify with Pac1p. In contrast to ubiquitination, sumoylation does not directly tag the substrate for degradation. However, SUMO-targeted ubiquitin ligases (STUbLs) can recognize a sumoylated substrate and promote its degradation via ubiquitination and the proteasome. Both Pac1p and Bik1p interact with the STUbL Nis1p-Ris1p and the protease Wss1p. Strains deleted for RIS1 or WSS1 accumulate Pac1p conjugates. This suggests a novel model in which the abundance of these MAPs may be regulated via STUbLs. Pac1p modification is also altered by Kar9p and the dynein regulator She1p. This work has implications for the regulation of dynein's interaction with various cargoes, including its off-loading to the cortex.
机译:微管和微管相关蛋白是包括有丝分裂和细胞内运动性在内的多种细胞过程的基础,但控制微管相关蛋白(MAPs)的因素知之甚少。在这里,我们显示了两个MAPs-CLIP-170同源物Bik1p和Lis1同源物Pac1p与sumoylation途径中的几种蛋白质相互作用。 Bik1p和Pac1p与酵母SUMO Smt3p相互作用; Ubc9p,一个E2;和Nfi1p,一个E3。 Bik1p在体外直接与SUMO相互作用,Smt3p和Bik1p的过表达导致其体内sumoylation。当SUMO蛋白酶Ulp1p失活时,观察到修饰的Pac1p。泛素和Smt3p均与Pac1p共纯化。与泛素化相反,磺酰化不能直接标记底物降解。但是,以SUMO为靶标的泛素连接酶(STUbLs)可以识别被磺酰化的底物,并通过泛素化和蛋白酶体促进其降解。 Pac1p和Bik1p都与STUbL Nis1p-Ris1p和蛋白酶Wss1p相互作用。为RIS1或WSS1删除的菌株会积累Pac1p共轭物。这表明可以通过STUbL调节这些MAP的丰度的新型模型。 Kar9p和动力蛋白调节剂She1p也会改变Pac1p的修饰。这项工作对调节动力蛋白与各种货物的相互作用具有重要意义,包括将其卸载至皮层。

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