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Both negative and positive G1 cell cycle regulators undergo proteasome-dependent degradation during sucrose starvation in Arabidopsis

机译:拟南芥中蔗糖饥饿期间,阴性和阳性G1细胞周期调节剂均经历蛋白酶体依赖性降解。

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摘要

The proteasome pathway regulates many aspects of biological processes in plants, such as plant hormone signaling, light responses, the circadian clock and regulation of cell division. Key cell cycle regulatory proteins including B-type cyclins, Cdc6, cyclin-dependent kinase inhibitors and E2Fc undergo proteasome-dependent degradation. We used the proteasome inhibitor MG132 to show that proteolysis of Arabidopsis RETINOBLASTOMA-RELATED 1 (AtRBR1) and three E2Fs is mediated by the proteasome pathway during sucrose starvation in Arabidopsis suspension MM2d cells. We found previously that estrogen-inducible RNAi-mediated downregulation of AtRBR1 leads to a higher frequency of arrest in G2 phase, instead of G1-phase arrest in the uninduced control, after sucrose starvation. Degradation of not only negative (AtRBR1 and E2Fc) but also positive (E2Fa and E2Fb) cell cycle regulators after sucrose starvation may be required for arrest in G1 phase, when cells integrate a variety of nutritional, hormonal and developmental signals to decide whether or not to commit to entry into the cell cycle.
机译:蛋白酶体途径调节植物生物学过程的许多方面,例如植物激素信号传导,光反应,昼夜节律和细胞分裂调节。关键的细胞周期调节蛋白,包括B型细胞周期蛋白,Cdc6,细胞周期蛋白依赖性激酶抑制剂和E2Fc,都经历蛋白酶体依赖性降解。我们使用蛋白酶体抑制剂MG132来显示拟南芥悬浮液MM2d细胞中蔗糖饥饿期间,蛋白酶体途径介导了拟南芥RETINOBLASTOMA相关1(AtRBR1)和三个E2F的蛋白水解。我们以前发现,蔗糖饥饿后,雌激素诱导的RNAi介导的AtRBR1下调导致更高的G2期停滞频率,而不是未诱导的对照中的G1期停滞。当细胞整合了各种营养,激素和发育信号以决定是否需要蔗糖饥饿后,不仅蔗糖饥饿后,阴性(AtRBR1和E2Fc)细胞而且阳性(E2Fa和E2Fb)细胞也需要降解。致力于进入细胞周期。

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