Biotechnology Research Center, Shandong Academy of Agricultural Sciences, Shandong Provincial Key Laboratory of Crop Genetic Improvement, Ecology and Physiology, Jinan 250100, PR China.
College of Life Science, Shandong University, Qingdao 266237, PR China.
Plant Physiol. 2019 May;180(1):289-304. doi: 10.1104/pp.18.01225. Epub 2019 Feb 12.
Ribosome biogenesis is an orchestrated process that relies on many assembly factors. The AAA-ATPase Midasin 1 (Mdn1) functions as a ribosome assembly factor in yeast (), but the roles of MDN1 in Arabidopsis () are poorly understood. Here, we showed that the Arabidopsis null mutant of is embryo-lethal. Using the weak mutant -, which maintains viability, we found that MDN1 is critical for the regular pattern of auxin maxima in the globular embryo and functions in root meristem maintenance. By detecting the subcellular distribution of ribosome proteins, we noted that - impairs nuclear export of the pre-60S ribosomal particle. The processing of ribosomal precusor RNAs, including 35S, 27SB, and 20S, is also affected in this mutant. MDN1 physically interacts with PESCADILLO2 (PES2), an essential assembly factor of the 60S ribosome, and the observed mislocalization of PES2 in - further implied that MDN1 plays an indispensable role in 60S ribosome biogenesis. Therefore, the observed hypersensitivity of - to a eukaryotic translation inhibitor and high-sugar conditions might be associated with the defect in ribosome biogenesis. Overall, this work establishes a role of Arabidopsis MDN1 in ribosome biogenesis, which agrees with its roles in embryogenesis and root development.
核糖体生物发生是一个协调的过程,依赖于许多组装因子。AAA-ATPase Midasin 1(Mdn1)在酵母中作为核糖体组装因子发挥作用(),但在拟南芥()中的作用知之甚少。在这里,我们表明拟南芥 Mdn1 的缺失突变体是胚胎致死的。利用保持活力的弱突变体 -,我们发现 Mdn1 对于球状胚胎中生长素最大值的规则模式至关重要,并在根分生组织维持中发挥作用。通过检测核糖体蛋白的亚细胞分布,我们注意到 - 会损害 pre-60S 核糖体颗粒的核输出。核糖体前体 RNA 的加工,包括 35S、27SB 和 20S,在这个突变体中也受到影响。MDN1 与 PESCADILLO2(PES2)物理相互作用,PES2 是 60S 核糖体的必需组装因子,在 - 中观察到 PES2 的定位错误进一步表明 MDN1 在 60S 核糖体生物发生中发挥不可或缺的作用。因此,- 对真核翻译抑制剂和高糖条件的高敏感性可能与核糖体生物发生的缺陷有关。总体而言,这项工作确立了拟南芥 MDN1 在核糖体生物发生中的作用,这与其在胚胎发生和根发育中的作用一致。