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植物核仁应激反应,NAC 依赖的细胞应激反应中的新面孔。

Plant Nucleolar Stress Response, a New Face in the NAC-Dependent Cellular Stress Responses.

作者信息

Ohbayashi Iwai, Sugiyama Munetaka

机构信息

FAFU-UCR Joint Center and Fujian Provincial Key Laboratory of Haixia Applied Plant Systems Biology, Haixia Institute of Science and Technology, Fujian Agriculture and Forestry University, Fuzhou, China.

Botanical Gardens, Graduate School of Science, The University of Tokyo, Tokyo, Japan.

出版信息

Front Plant Sci. 2018 Jan 9;8:2247. doi: 10.3389/fpls.2017.02247. eCollection 2017.

Abstract

The nucleolus is the most prominent nuclear domain, where the core processes of ribosome biogenesis occur vigorously. All these processes are finely orchestrated by many nucleolar factors to build precisely ribosome particles. In animal cells, perturbations of ribosome biogenesis, mostly accompanied by structural disorders of the nucleolus, cause a kind of cellular stress to induce cell cycle arrest, senescence, or apoptosis, which is called nucleolar stress response. The best-characterized pathway of this stress response involves p53 and MDM2 as key players. p53 is a crucial transcription factor that functions in response to not only nucleolar stress but also other cellular stresses such as DNA damage stress. These cellular stresses release p53 from the inhibition by MDM2, an E3 ubiquitin ligase targeting p53, in various ways, which leads to p53-dependent activation of a set of genes. In plants, genetic impairments of ribosome biogenesis factors or ribosome components have been shown to cause characteristic phenotypes, including a narrow and pointed leaf shape, implying a common signaling pathway connecting ribosomal perturbations and certain aspects of growth and development. Unlike animals, however, plants have neither p53 nor MDM2 family proteins. Then the question arises whether plant cells have a nucleolar stress response pathway. In recent years, it has been reported that several members of the plant-specific transcription factor family NAC play critical roles in the pathways responsive to various cellular stresses. In this mini review, we outline the plant cellular stress response pathways involving NAC transcription factors with reference to the p53-MDM2-dependent pathways of animal cells, and discuss the possible involvement of a plant-unique, NAC-mediated pathway in the nucleolar stress response in plants.

摘要

核仁是最显著的核结构域,核糖体生物合成的核心过程在其中活跃发生。所有这些过程都由许多核仁因子精细协调,以精确构建核糖体颗粒。在动物细胞中,核糖体生物合成的扰动大多伴随着核仁的结构紊乱,会引发一种细胞应激,诱导细胞周期停滞、衰老或凋亡,这被称为核仁应激反应。这种应激反应最具特征的途径涉及p53和MDM2作为关键参与者。p53是一种关键的转录因子,不仅在应对核仁应激时发挥作用,还在应对其他细胞应激如DNA损伤应激时发挥作用。这些细胞应激以各种方式使p53从靶向p53的E3泛素连接酶MDM2的抑制中释放出来,从而导致一组基因的p53依赖性激活。在植物中,核糖体生物合成因子或核糖体组分的遗传损伤已被证明会导致特征性表型,包括叶片形状狭窄和尖锐,这意味着存在一条连接核糖体扰动与生长发育某些方面的共同信号通路。然而,与动物不同,植物既没有p53也没有MDM2家族蛋白。那么问题就来了,植物细胞是否具有核仁应激反应途径。近年来,有报道称植物特有的转录因子家族NAC的几个成员在应对各种细胞应激的途径中发挥关键作用。在这篇小型综述中,我们参照动物细胞中依赖p53-MDM2的途径,概述了涉及NAC转录因子的植物细胞应激反应途径,并讨论了植物特有的、由NAC介导的途径可能参与植物核仁应激反应的情况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1219/5767325/cc139d812ab5/fpls-08-02247-g0001.jpg

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