4.7 Article

The acidic domain of the chloroplast RNA-binding protein CP31A supports cold tolerance in Arabidopsis thaliana

期刊

JOURNAL OF EXPERIMENTAL BOTANY
卷 72, 期 13, 页码 4904-4914

出版社

OXFORD UNIV PRESS
DOI: 10.1093/jxb/erab165

关键词

Acidic domain; Arabidopsis thaliana; chloroplast; NDH complex; organelle; RNA eding; RNA processing; RNA stability

资金

  1. Deutsche Forschungsgemeinschaft [TRR175, FOR 2092]
  2. Japan Society for the Promotion of Science

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The study reveals that the processing of chloroplast RNA relies on a large number of nuclear-encoded RNA-binding proteins, with the CP31A protein playing a crucial role in chloroplast development under low temperature conditions. The acidic domain of CP31A shows significant differences in function in RNA metabolism and cold resistance, with different functions associated with different regions of the protein.
The processing of chloroplast RNA requires a large number of nuclear-encoded RNA-binding proteins (RBPs) that are imported post-translationally into the organelle. The chloroplast ribonucleoprotein 31A (CP31A) supports RNA editing at 13 sites and also supports the accumulation of multiple chloroplast mRNAs. In cp31a mutants it is the ndhF mRNA (coding for a subunit of the NDH complex) that is most strongly affected. CP31A becomes particularly important at low temperatures, where it is essential for chloroplast development in young tissue. Next to two RNA-recognition motifs (RRMs), CP31A has an N-terminal acidic domain that is phosphorylated at several sites. We investigated the function of the acidic domain in the role of CP31A in RNA metabolism and cold resistance. Using point mutagenesis, we demonstrate that the known phosphorylation sites within the acidic domain are irrelevant for any of the known functions of CP31A, both at normal and at low temperatures. Even when the entire acidic domain is removed, no effects on RNA editing were observed. By contrast, loss of the acidic domain reduced the ability of CP31A to stabilize the ndhF mRNA, which was associated with reduced NDH complex activity. Most importantly, acidic domain-less CP31A lines displayed bleached young tissue in the cold. Together, these data show that the different functions of CP31A can be assigned to different regions of the protein: the RRMs are sufficient to maintain RNA editing and to allow the accumulation of basal amounts of ndhF mRNA, while chloroplast development under cold conditions critically depends on the acidic domain.

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