RRC ID 70528
著者 Talloji P, Nehlin L, Hüttel B, Winter N, Černý M, Dufková H, Hamali B, Hanczaryk K, Novák J, Hermanns M, Drexler N, Eifler K, Schlaich N, Brzobohatý B, Bachmair A.
タイトル Transcriptome, metabolome and suppressor analysis reveal an essential role for the ubiquitin-proteasome system in seedling chloroplast development.
ジャーナル BMC Plant Biol
Abstract BACKGROUND:Many regulatory circuits in plants contain steps of targeted proteolysis, with the ubiquitin proteasome system (UPS) as the mediator of these proteolytic events. In order to decrease ubiquitin-dependent proteolysis, we inducibly expressed a ubiquitin variant with Arg at position 48 instead of Lys (ubK48R). This variant acts as an inhibitor of proteolysis via the UPS, and allowed us to uncover processes that are particularly sensitive to UPS perturbation.
RESULTS:Expression of ubK48R during germination leads to seedling death. We analyzed the seedling transcriptome, proteome and metabolome 24 h post ubK48R induction and confirmed defects in chloroplast development. We found that mutations in single genes can suppress seedling lethality, indicating that a single process in seedlings is critically sensitive to decreased performance of the UPS. Suppressor mutations in phototropin 2 (PHOT2) suggest that a contribution of PHOT2 to chloroplast protection is compromised by proteolysis inhibition.
CONCLUSIONS:Overall, the results reveal protein turnover as an integral part of a signal transduction chain that protects chloroplasts during development.
巻・号 22(1)
ページ 183
公開日 2022-4-8
DOI 10.1186/s12870-022-03536-6
PII 10.1186/s12870-022-03536-6
PMID 35395773
PMC PMC8991883
MeSH Chloroplasts / genetics Chloroplasts / metabolism Metabolome Proteasome Endopeptidase Complex* / genetics Proteasome Endopeptidase Complex* / metabolism Proteolysis Seedlings / genetics Seedlings / metabolism Transcriptome Ubiquitin* / metabolism
IF 3.497
リソース情報
シロイヌナズナ / 植物培養細胞・遺伝子 pdx62360 pdz08478 pdx62834