Tillich Michael, Hardel Simone L, Kupsch Christiane, Armbruster Ute, Delannoy Etienne, Gualberto José M, Lehwark Pascal, Leister Dario, Small Ian D, Schmitz-Linneweber Christian
Institute of Biology, Humboldt-University of Berlin, 10115 Berlin, Germany.
Proc Natl Acad Sci U S A. 2009 Apr 7;106(14):6002-7. doi: 10.1073/pnas.0808529106. Epub 2009 Mar 18.
Chloroplast ribonucleoproteins (cpRNPs) are nuclear-encoded, highly abundant, and light-regulated RNA binding proteins. They have been shown to be involved in chloroplast RNA processing and stabilization in vitro and are phylogenetically related to the well-described heterogeneous nuclear ribonucleoproteins (hnRNPs). cpRNPs have been found associated with mRNAs present in chloroplasts and have been regarded as nonspecific stabilizers of chloroplast transcripts. Here, we demonstrate that null mutants of the cpRNP family member CP31A exhibit highly specific and diverse defects in chloroplast RNA metabolism. First, analysis of cp31a and cp31a/cp31b double mutants uncovers that these 2 paralogous genes participate nonredundantly in a combinatorial fashion in processing a subset of chloroplast editing sites in vivo. Second, a genome-wide analysis of chloroplast transcript accumulation in cp31a mutants detected a virtually complete loss of the chloroplast ndhF mRNA and lesser reductions for specific other mRNAs. Fluorescence analyses show that the activity of the NADH dehydrogenase complex, which also includes the NdhF subunit, is defective in cp31a mutants. This indicates that cpRNPs are important in vivo for calibrating the expression levels of specific chloroplast mRNAs and impact chloroplast physiology. Taken together, the specificity and combinatorial aspects of cpRNP functions uncovered suggest that these chloroplast proteins are functional equivalents of nucleocytosolic hnRNPs.
叶绿体核糖核蛋白(cpRNPs)是由细胞核编码、高度丰富且受光调控的RNA结合蛋白。体外实验表明,它们参与叶绿体RNA的加工与稳定,并且在系统发育上与已被充分描述的不均一核核糖核蛋白(hnRNPs)相关。已发现cpRNPs与叶绿体中存在的mRNA相关联,并被视为叶绿体转录本的非特异性稳定剂。在此,我们证明cpRNP家族成员CP31A的缺失突变体在叶绿体RNA代谢中表现出高度特异性和多样的缺陷。首先,对cp31a和cp31a/cp31b双突变体的分析发现,这两个旁系同源基因在体内以组合方式非冗余地参与叶绿体编辑位点子集的加工。其次,对cp31a突变体中叶绿体转录本积累的全基因组分析检测到叶绿体ndhF mRNA几乎完全缺失,而其他特定mRNA的减少程度较小。荧光分析表明,同样包含NdhF亚基的NADH脱氢酶复合体的活性在cp31a突变体中存在缺陷。这表明cpRNPs在体内对于校准特定叶绿体mRNA的表达水平很重要,并影响叶绿体生理功能。综上所述,所揭示的cpRNP功能的特异性和组合特性表明,这些叶绿体蛋白是核质hnRNPs的功能等同物。