Institute of Plant and Microbial Biology, Academia Sinica, Taipei, Taiwan.
Graduate Institute of Life Sciences, National Defense Medical Center, Taipei, Taiwan.
Plant Physiol. 2021 Apr 2;185(3):1039-1058. doi: 10.1093/plphys/kiaa085.
Although the nucleolus is involved in ribosome biogenesis, the functions of numerous nucleolus-localized proteins remain unclear. In this study, we genetically isolated Arabidopsis thaliana salt hypersensitive mutant 1 (sahy1), which exhibits slow growth, short roots, pointed leaves, and sterility. SAHY1 encodes an uncharacterized protein that is predominantly expressed in root tips, early developing seeds, and mature pollen grains and is mainly restricted to the nucleolus. Dysfunction of SAHY1 primarily causes the accumulation of 32S, 18S-A3, and 27SB pre-rRNA intermediates. Coimmunoprecipitation experiments further revealed the interaction of SAHY1 with ribosome proteins and ribosome biogenesis factors. Moreover, sahy1 mutants are less sensitive to protein translation inhibitors and show altered expression of structural constituents of ribosomal genes and ribosome subunit profiles, reflecting the involvement of SAHY1 in ribosome composition and ribosome biogenesis. Analyses of ploidy, S-phase cell cycle progression, and auxin transport and signaling indicated the impairment of mitotic activity, translation of auxin transport carrier proteins, and expression of the auxin-responsive marker DR5::GFP in the root tips or embryos of sahy1 plants. Collectively, these data demonstrate that SAHY1, a nucleolar protein involved in ribosome biogenesis, plays critical roles in normal plant growth in association with auxin transport and signaling.
尽管核仁参与核糖体的生物发生,但许多定位于核仁的蛋白质的功能仍不清楚。在这项研究中,我们通过遗传方法分离得到拟南芥盐敏感突变体 1(sahy1),该突变体表现出生长缓慢、根短、叶尖和不育的特征。SAHY1 编码一种未被鉴定的蛋白,主要在根尖、早期发育的种子和成熟花粉粒中表达,主要局限于核仁。SAHY1 功能失调主要导致 32S、18S-A3 和 27SB 前 rRNA 中间体的积累。共免疫沉淀实验进一步揭示了 SAHY1 与核糖体蛋白和核糖体生物发生因子的相互作用。此外,sahy1 突变体对蛋白质翻译抑制剂的敏感性降低,并且核糖体基因的结构成分和核糖体亚基谱的表达发生改变,这反映了 SAHY1 参与核糖体组成和核糖体生物发生。对倍性、S 期细胞周期进程以及生长素运输和信号转导的分析表明,sahy1 植物根尖或胚胎中的有丝分裂活性、生长素运输载体蛋白的翻译以及生长素响应标记物 DR5::GFP 的表达受到损害。总之,这些数据表明,参与核糖体生物发生的核仁蛋白 SAHY1 在与生长素运输和信号转导相关的正常植物生长中发挥着关键作用。