| Literature DB >> 19448041 |
Wenhe Cai1, Daili Ji, Lianwei Peng, Jinkui Guo, Jinfang Ma, Meijuan Zou, Congming Lu, Lixin Zhang.
Abstract
To gain insight into the molecular mechanism of RNA editing, we have characterized the low psii accumulation66 (lpa66) Arabidopsis (Arabidopsis thaliana) mutant, which displays a high chlorophyll fluorescence phenotype. Its perturbed chlorophyll fluorescence is reflected in reduced levels of photosystem II (PSII) proteins. In vivo protein labeling showed that synthesis rates of the PSII reaction center protein D1/D2 were lower, and turnover rates of PSII core proteins higher, than in wild-type counterparts. The assembly of newly synthesized proteins into PSII occurs in the lpa66 mutant but with reduced efficiency compared with the wild type. LPA66 encodes a chloroplast protein of the pentatricopeptide repeat family. In lpa66 mutants, editing of psbF that converts serine to phenylalanine is specifically impaired. Thus, LPA66 is specifically required for editing the psbF transcripts in Arabidopsis, and the amino acid alternation due to lack of editing strongly affects the efficiency of the assembly of PSII complexes.Entities:
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Year: 2009 PMID: 19448041 PMCID: PMC2705037 DOI: 10.1104/pp.109.136812
Source DB: PubMed Journal: Plant Physiol ISSN: 0032-0889 Impact factor: 8.340