Department of Botany and Plant Biology and Institute of Genetics and Genomics in Geneva University of Geneva, CH-1211 Geneva 4, Switzerland and Institute of Biology, Molecular Genetics, Humboldt University of Berlin, D-10115 Berlin, Germany.
Nucleic Acids Res. 2014 Mar;42(5):3286-97. doi: 10.1093/nar/gkt1272. Epub 2013 Dec 11.
Many chloroplast transcripts are protected against exonucleolytic degradation by RNA-binding proteins. Such interactions can lead to the accumulation of short RNAs (sRNAs) that represent footprints of the protein partner. By mining existing data sets of Chlamydomonas reinhardtii small RNAs, we identify chloroplast sRNAs. Two of these correspond to the 5'-ends of the mature psbB and psbH messenger RNAs (mRNAs), which are both stabilized by the nucleus-encoded protein Mbb1, a member of the tetratricopeptide repeat family. Accordingly, we find that the two sRNAs are absent from the mbb1 mutant. Using chloroplast transformation and site-directed mutagenesis to survey the psbB 5' UTR, we identify a cis-acting element that is essential for mRNA accumulation. This sequence is also found in the 5' UTR of psbH, where it plays a role in RNA processing. The two sRNAs are centered on these cis-acting elements. Furthermore, RNA binding assays in vitro show that Mbb1 associates with the two elements specifically. Taken together, our data identify a conserved cis-acting element at the extremity of the psbH and psbB 5' UTRs that plays a role in the processing and stability of the respective mRNAs through interactions with the tetratricopeptide repeat protein Mbb1 and leads to the accumulation of protected sRNAs.
许多叶绿体转录本通过与 RNA 结合蛋白的相互作用被保护免受核酸外切酶的降解。这种相互作用会导致短 RNA(sRNA)的积累,这些 sRNA 代表了蛋白质伴侣的足迹。通过挖掘现有的衣藻小 RNA 数据集,我们鉴定了叶绿体 sRNA。其中两个与成熟 psbB 和 psbH mRNA(均由核编码蛋白 Mbb1 稳定)的 5' 端相对应,Mbb1 是四肽重复家族的成员。因此,我们发现这两个 sRNA 在 mbb1 突变体中不存在。通过叶绿体转化和定点突变来研究 psbB 5'UTR,我们鉴定了一个顺式作用元件,它对 mRNA 积累是必需的。该序列也存在于 psbH 的 5'UTR 中,在那里它在 RNA 加工中起作用。这两个 sRNA 以这些顺式作用元件为中心。此外,体外 RNA 结合实验表明 Mbb1 与这两个元件特异性结合。总之,我们的数据确定了 psbH 和 psbB 5'UTR 末端的一个保守顺式作用元件,通过与四肽重复蛋白 Mbb1 的相互作用,在各自 mRNA 的加工和稳定性中发挥作用,并导致受保护的 sRNA 的积累。