Department of Biotechnology, Agricultural University of Athens, Athens, Greece.
Institute for Bioinnovation, Biomedical Sciences Research Center "Alexander Fleming", Athens, Greece.
Dev Cell. 2019 Sep 23;50(6):767-779.e7. doi: 10.1016/j.devcel.2019.07.024. Epub 2019 Aug 22.
Eukaryotic organisms accomplish the removal of introns to produce mature mRNAs through splicing. Nuclear and organelle splicing mechanisms are distinctively executed by spliceosome and group II intron complex, respectively. Here, we show that LEFKOTHEA, a nuclear encoded RNA-binding protein, participates in chloroplast group II intron and nuclear pre-mRNA splicing. Transiently optimized LEFKOTHEA nuclear activity is fundamental for plant growth, whereas the loss of function abruptly arrests embryogenesis. Nucleocytoplasmic partitioning and chloroplast allocation are efficiently balanced via functional motifs in LEFKOTHEA polypeptide. In the context of nuclear-chloroplast coevolution, our results provide a strong paradigm of the convergence of RNA maturation mechanisms in the nucleus and chloroplasts to coordinately regulate gene expression and effectively control plant growth.
真核生物通过剪接去除内含子以产生成熟的 mRNA。核和细胞器剪接机制分别由剪接体和 II 组内含子复合物执行。在这里,我们表明,核编码 RNA 结合蛋白 LEFKOTHEA 参与叶绿体 II 组内含子和核前体 mRNA 的剪接。瞬时优化的 LEFKOTHEA 核活性对于植物生长是基础的,而功能丧失则会突然阻止胚胎发生。通过 LEFKOTHEA 多肽中的功能基序,有效地平衡了核质和叶绿体的分配。在核-叶绿体协同进化的背景下,我们的结果提供了一个强有力的范例,说明核和叶绿体中 RNA 成熟机制的趋同,以协调调控基因表达并有效控制植物生长。