Li Junjie, Chen Xuemei
Waksman Institute, Rutgers University, Piscataway, New Jersey 08854, USA.
Plant Physiol. 2003 Aug;132(4):1913-24. doi: 10.1104/pp.103.023291.
Exportin-t was first identified in humans as a protein that mediates the export of tRNAs from the nucleus to the cytoplasm. Mutations in Los1p, the Saccharomyces cerevisiae exportin-t homolog, result in nuclear accumulation of tRNAs. Because no exportin-t mutants have been reported in multicellular organisms, the developmental functions of exportin-t have not been determined. Here, we report the isolation and characterization of two Arabidopsis exportin-t mutants, paused-5 and paused-6. The mutant phenotypes indicate that exportin-t acts pleiotropically in plant development. In particular, paused-5 and paused-6 result in delayed leaf formation during vegetative development. The two paused mutations also cause the transformation of reproductive organs into perianth organs in the hua1-1 hua2-1 background, which is partially defective in reproductive organ identity specification. The floral phenotypes of hua1-1 hua2-1 paused mutants resemble those of mutations in the floral homeotic gene AGAMOUS. Moreover, paused-5 enhances the mutant phenotypes of two floral meristem identity genes, LEAFY and APETALA1. The developmental defects caused by paused mutations confirm the important roles of exportin-t in gene expression in multicellular organisms. In addition, a paused null allele, paused-6, is still viable, suggesting the presence of redundant tRNA export pathway(s) in Arabidopsis.
输出蛋白t最初是在人类中作为一种介导tRNA从细胞核输出到细胞质的蛋白质被鉴定出来的。酿酒酵母输出蛋白t同源物Los1p的突变会导致tRNA在细胞核中积累。由于在多细胞生物中尚未报道过输出蛋白t突变体,因此输出蛋白t的发育功能尚未确定。在这里,我们报告了拟南芥两个输出蛋白t突变体paused-5和paused-6的分离和特征。突变体表型表明输出蛋白t在植物发育中具有多效性作用。特别是,paused-5和paused-6在营养发育过程中导致叶片形成延迟。这两个paused突变还会在hua1-1 hua2-1背景下导致生殖器官转变为花被器官,hua1-1 hua2-1在生殖器官身份指定方面存在部分缺陷。hua1-1 hua2-1 paused突变体的花表型类似于花同源异型基因AGAMOUS的突变表型。此外,paused-5增强了两个花分生组织身份基因LEAFY和APETALA1的突变体表型。paused突变导致的发育缺陷证实了输出蛋白t在多细胞生物基因表达中的重要作用。此外,一个paused无效等位基因paused-6仍然是可存活的,这表明拟南芥中存在冗余的tRNA输出途径。