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植物中 PP2A 调节亚基 Tap46 的分子功能。

Molecular functions of the PP2A regulatory subunit Tap46 in plants.

机构信息

Department of Biology, Yonsei University, Seoul, Korea.

出版信息

Plant Signal Behav. 2011 Jul;6(7):1067-8. doi: 10.4161/psb.6.7.15651.

Abstract

Tap42/α4 is a regulatory subunit of the protein phosphatase 2A (PP2A) family of phosphatases and plays a role in the target of rapamycin (TOR) pathway that regulates cell growth, ribosome biogenesis, translation and cell cycle progression in both yeast and mammals. We determined the cellular functions of Tap46, the plant homolog of Tap42/α4, in both Arabidopsis thaliana and Nicotiana benthamiana. Tap46 associated with the catalytic subunits of PP2A and the PP2A-like phosphatases PP4 and PP6 in vivo. Tap46 was phosphorylated by TOR in vitro, indicating that Tap46 is a direct substrate of TOR kinase. Tap46 deficiency caused cellular phenotypes that are similar to TOR-depletion phenotypes, including repression of global translation and activation of both autophagy and nitrogen recycling. Furthermore, Tap46 depletion regulated total PP2A activity in a time-dependent manner similar to TOR deficiency. These results suggest that Tap46 acts as a positive effector of the TOR signaling pathway in controlling diverse metabolic processes in plants. However, Tap46 silencing caused acute cell death, while TOR silencing only hastened senescence. Furthermore, mitotic cells with reduced Tap46 levels exhibited chromatin bridges at anaphase, while TOR depletion did not cause a similar defect. These findings suggest that Tap46 may have TOR-independent functions as well as functions related to TOR signaling in plants.

摘要

Tap42/α4 是蛋白磷酸酶 2A(PP2A)家族磷酸酶的调节亚基,在雷帕霉素(TOR)途径中发挥作用,该途径调节酵母和哺乳动物中的细胞生长、核糖体生物发生、翻译和细胞周期进程。我们在拟南芥和本氏烟中确定了 Tap42/α4 的植物同源物 Tap46 的细胞功能。Tap46 在体内与 PP2A 的催化亚基以及 PP2A 样磷酸酶 PP4 和 PP6 相关。Tap46 在体外被 TOR 磷酸化,表明 Tap46 是 TOR 激酶的直接底物。Tap46 缺失导致细胞表型类似于 TOR 缺失表型,包括全局翻译抑制和自噬和氮循环的激活。此外,Tap46 缺失以类似于 TOR 缺乏的方式在时间依赖性方式下调节总 PP2A 活性。这些结果表明 Tap46 作为 TOR 信号通路的正效应物在控制植物中各种代谢过程中发挥作用。然而,Tap46 沉默会导致急性细胞死亡,而 TOR 沉默只会加速衰老。此外,Tap46 水平降低的有丝分裂细胞在后期出现染色质桥,而 TOR 耗尽不会导致类似的缺陷。这些发现表明 Tap46 可能具有 TOR 独立的功能以及与植物中 TOR 信号相关的功能。

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