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Aurora-A kinase interacting protein 1 (AURKAIP1) promotes Aurora-A degradation through an alternative ubiquitin-independent pathway

机译:Aurora-A激酶相互作用蛋白1(AURKAIP1)通过另一种遍在蛋白依赖性途径促进Aurora-A降解

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摘要

Mitotic Aurora-A is an oncogene, which undergoes a cell-cycle-dependent regulation of both its synthesis and degradation. Overexpression of Aurora-A leads to aneuploidy and cellular transformation in cultured cells. It has been shown that the cell-cycle-dependent turnover of Aurora-A is mediated by Cdh1 (CDC20 homologue 1) through the anaphase-promoting complex/cyclosome (APC/C)–ubiquitin–proteasome pathway. We have described previously the identification of an Aurora-A kinase interacting protein, AURKAIP1 (formerly described as AIP), which is also involved in the destabilization of Aurora-A through the proteasome-dependent degradation pathway. In an attempt to investigate the mechanism of AURKAIP1-mediated Aurora-A degradation, we report here that AURKAIP1 targets Aurora-A for degradation in a proteasome-dependent but Ub (ubiquitin)-independent manner. AURKAIP1 inhibits polyubiquitination of Aurora-A. A non-interactive AURKAIP1 mutant that cannot destabilize Aurora-A restores ubiquitination of Aurora-A. An A-box mutant of Aurora-A, which cannot be targeted for proteasome-dependent degradation by Cdh1, can still be degraded by AURKAIP1. Inhibition of cellular ubiquitination either by expression of dominant negative Ub mutants or by studies in ts-20 (temperature sensitive-20) CHO (Chinese-hamster ovary) cell line lacking the E1 Ub activating enzyme at the restrictive temperature, cannot abolish AURKAIP1-mediated degradation of Aurora-A. AURKAIP1 specifically decreases the stability of Aurora-A in ts-20 CHO cells at the restrictive temperature, while cyclinB1 and p21 are not affected. This demonstrates that there exists an Ub-independent alternative pathway for Aurora-A degradation and AURKAIP1 promotes Aurora-A degradation through this Ub-independent yet proteasome-dependent pathway.
机译:有丝分裂的极光-A是一种癌基因,其合成和降解过程都受到细胞周期依赖的调节。 Aurora-A的过表达导致培养细胞中的非整倍性和细胞转化。已经显示,Adhora-A的细胞周期依赖性更新是通过促进后期复杂/环体(APC / C)-泛素-蛋白酶体途径由Cdh1(CDC20同源物1)介导的。我们之前已经描述了Aurora-A激酶相互作用蛋白AURKAIP1(以前称为AIP)的鉴定,该蛋白还通过蛋白酶体依赖性降解途径参与Aurora-A的去稳定作用。在尝试调查AURKAIP1介导的Aurora-A降解机理的过程中,我们在这里报告说AURKAIP1以蛋白酶体依赖性但Ub(泛素)依赖性的方式靶向Aurora-A降解。 AURKAIP1抑制Aurora-A的多聚泛素化。不能破坏Aurora-A稳定性的非交互式AURKAIP1突变体可恢复Aurora-A的泛素化。无法通过Cdh1靶向蛋白酶体依赖性降解的Aurora-A A-box突变体仍可以通过AURKAIP1降解。通过显性负Ub突变体的表达或在限制温度下缺乏E1 Ub活化酶的ts-20(温度敏感-20)CHO(中国仓鼠卵巢)CHO细胞系中研究抑制细胞泛素化,不能废除AURKAIP1介导的Aurora-A的降解。在限制温度下,AURKAIP1会特异性降低ts-20 CHO细胞中Aurora-A的稳定性,而cyclinB1和p21则不受此影响。这表明存在一个不依赖Ub的Aurora-A降解替代途径,而AURKAIP1通过这种不依赖Ub但仍依赖蛋白酶体的途径促进Aurora-A降解。

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