Department of Biochemistry, Osaka Medical College, 2-7 Daigakumachi, Takatsuki, Japan.
Department of Life Science, College of Science, Rikkyo University, 3-34-1 Nishi-Ikebukuro, Toshima-ku, Tokyo, Japan.
Plant Cell Physiol. 2019 Sep 1;60(9):2026-2039. doi: 10.1093/pcp/pcz064.
The tRNA modification at the wobble position of Lys, Glu and Gln (wobbleU* modification) is responsible for the fine-tuning of protein translation efficiency and translation rate. This modification influences organism function in accordance with growth and environmental changes. However, the effects of wobbleU* modification at the cellular, tissue, or individual level have not yet been elucidated. In this study, we show that sulfur modification of wobbleU* of the tRNAs affects leaf development in Arabidopsis thaliana. The sulfur modification was impaired in the two wobbleU*-modification mutants: the URM1-like protein-defective mutant and the Elongator complex-defective mutants. Analyses of the mutant phenotypes revealed that the deficiency in the wobbleU* modification increased the airspaces in the leaves and the leaf size without affecting the number and the area of palisade mesophyll cells. On the other hand, both mutants exhibited increased number of leaf epidermal pavement cells but with reduced cell size. The deficiency in the wobbleU* modification also delayed the initiation of the endoreduplication processes of mesophyll cells. The phenotype of ASYMMETRIC LEAVES2-defective mutant was enhanced in the Elongator-defective mutants, while it was unchanged in the URM1-like protein-defective mutant. Collectively, the findings of this study suggest that the tRNA wobbleU* modification plays an important role in leaf morphogenesis by balancing the development between epidermal and mesophyll tissues.
赖氨酸、谷氨酸和谷氨酰胺的 tRNA 摆动位置的修饰(摆动 U修饰)负责微调蛋白质翻译效率和翻译速度。这种修饰根据生长和环境变化影响生物体功能。然而,摆动 U修饰在细胞、组织或个体水平上的影响尚未阐明。在这项研究中,我们表明,tRNA 摆动 U的硫修饰影响拟南芥的叶片发育。在两个摆动 U-修饰突变体中,URM1 样蛋白缺陷突变体和延伸因子复合体缺陷突变体中,硫修饰受损。对突变体表型的分析表明,摆动 U修饰的缺乏增加了叶片中的气腔和叶片大小,而不影响栅栏状叶肉细胞的数量和面积。另一方面,两个突变体都表现出增加的叶片表皮平铺细胞数量,但细胞大小减小。摆动 U修饰的缺乏也延迟了叶肉细胞内复制过程的起始。ASYMMETRIC LEAVES2 缺陷突变体的表型在延伸因子缺陷突变体中增强,而在 URM1 样蛋白缺陷突变体中不变。总之,这项研究的结果表明,tRNA 摆动 U*修饰通过平衡表皮和叶肉组织之间的发育在叶片形态发生中起着重要作用。