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拟南芥核干细胞蛋白 LIKE1(NSN1)可能通过与核小体组装蛋白 AtNAP1;1 合作来调节细胞周期。

Arabidopsis NUCLEOSTEMIN-LIKE 1 (NSN1) regulates cell cycling potentially by cooperating with nucleosome assembly protein AtNAP1;1.

机构信息

Institute of Animal Science, Chinese Academy of Agricultural Sciences, Beijing, 100193, China.

Department of Plant Sciences, University of Idaho, Moscow, Idaho, 83844, USA.

出版信息

BMC Plant Biol. 2018 Jun 1;18(1):99. doi: 10.1186/s12870-018-1289-2.

Abstract

BACKGROUND

In mammals, nucleostemin (NS), a nucleolar GTPase, is involved in stem cell proliferation, embryogenesis and ribosome biogenesis. Arabidopsis NUCLEOSTEMIN-LIKE 1 (NSN1) has previously been shown to be essential for plant growth and development. However, the role of NSN1 in cell proliferation is largely unknown.

RESULTS

Using nsn1, a loss-of-function mutant of Arabidopsis NSN1, we investigated the function of NSN1 in plant cell proliferation and cell cycle regulation. Morphologically, nsn1 exhibited developmental defects in both leaves and roots, producing severely reduced vegetative organs with a much smaller number of cells than those in the wild type. Dynamic analysis of leaf and root growth revealed a lower cell proliferation rate and slower cell division in nsn1. Consistently, the transcriptional levels of key cell  cycle genes, including those regulating the transition of G1-S and G2-M, were reduced drastically in nsn1. The introduction of CYCLIN B1::GUS into nsn1 resulted in confined expression of GUS in both the leaf primordia and root meristem, indicating that cell proliferation was hampered by the mutation of NSN1. Upon subjection to treatment with bleomycin and methyl methanesulfonate (MMS), nsn1 plants exhibited hypersensitivity to the genotoxic agents. In the nucleus, NSN1 interacted with nucleosome assembly protein1 (AtNAP1;1), a highly conserved histone chaperone functioning in cell proliferation. Notably, the N-terminal conserved domains of Arabidopsis NSN1 were critical for the physical interaction.

CONCLUSIONS

As a conserved homolog of mammalian nucleostemin, Arabidopsis NSN1 plays pivotal roles in embryogenesis and ribosome biogenesis. In this study, NSN1 was found to function as a positive regulator in cell cycle progression. The interaction between NSN1 and histone chaperone AtNAP1;1, and the high resemblance in sensitivity to genotoxics between nsn1 and atnap1;1 imply the indispensability of the two nuclear proteins for cell cycle regulation. This work provides an insight into the delicate control of cell proliferation through the cooperation of a GTP-binding protein with a nucleosome assembly/disassembly protein in Arabidopsis.

摘要

背景

在哺乳动物中,核干细胞蛋白(NS)是一种核仁 GTPase,参与干细胞增殖、胚胎发生和核糖体生物发生。拟南芥核干细胞蛋白样 1(NSN1)先前被证明对植物的生长和发育是必不可少的。然而,NSN1 在细胞增殖中的作用在很大程度上是未知的。

结果

使用 nsn1,拟南芥 NSN1 的功能丧失突变体,我们研究了 NSN1 在植物细胞增殖和细胞周期调控中的功能。形态上,nsn1 在叶片和根中都表现出发育缺陷,产生的营养器官严重减少,细胞数量比野生型少得多。叶片和根生长的动态分析显示,nsn1 的细胞增殖率较低,细胞分裂速度较慢。一致地,关键细胞周期基因的转录水平,包括那些调节 G1-S 和 G2-M 转变的基因,在 nsn1 中急剧降低。将 CYCLIN B1::GUS 引入 nsn1 导致 GUS 在叶片原基和根分生组织中的表达受限,表明细胞增殖受到 NSN1 突变的阻碍。在用博来霉素和甲磺酸甲酯(MMS)处理后,nsn1 植物对这些遗传毒性剂表现出超敏反应。在核内,NSN1 与核小体装配蛋白 1(AtNAP1;1)相互作用,AtNAP1;1 是一种高度保守的组蛋白伴侣,在细胞增殖中发挥作用。值得注意的是,拟南芥 NSN1 的 N 端保守结构域对于物理相互作用是关键的。

结论

作为哺乳动物核干细胞蛋白的保守同源物,拟南芥 NSN1 在胚胎发生和核糖体生物发生中发挥关键作用。在这项研究中,NSN1 被发现作为细胞周期进程的正调节剂。NSN1 与组蛋白伴侣 AtNAP1;1 的相互作用,以及 nsn1 和 atnap1;1 对遗传毒物的敏感性高度相似,暗示这两种核蛋白对于细胞周期调控是不可或缺的。这项工作提供了一个深入了解的视角,即通过 GTP 结合蛋白与核小体组装/拆卸蛋白的合作,在拟南芥中对细胞增殖进行精细调控。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/45a8/5984758/0b3c34b265d5/12870_2018_1289_Fig1_HTML.jpg

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