2020
Chloroplast Sec14-like 1 (CPSFL1) is essential for normal chloroplast development and affects carotenoid accumulation in Chlamydomonas
García-Cerdán JG, Schmid EM, Takeuchi T, McRae I, McDonald KL, Yordduangjun N, Hassan AM, Grob P, Xu CS, Hess HF, Fletcher DA, Nogales E, Niyogi KK. Chloroplast Sec14-like 1 (CPSFL1) is essential for normal chloroplast development and affects carotenoid accumulation in Chlamydomonas. Proceedings Of The National Academy Of Sciences Of The United States Of America 2020, 117: 12452-12463. PMID: 32404426, PMCID: PMC7275715, DOI: 10.1073/pnas.1916948117.Peer-Reviewed Original ResearchConceptsChloroplast developmentCarotenoid accumulationNormal chloroplast developmentBiosynthesis of carotenoidsEndosymbiotic originInsertional mutantsDomain proteinsIsoprenoid precursorsOxygenic photosynthesisChloroplast structureSuch proteinsAuxiliary proteinsCarotenoid transportPhytoene synthesisLow carotenoid contentMutantsCommitted precursorsProteinChlamydomonasEssential roleImpaired biosynthesisCarotenoid contentPhotosynthesisBiosynthesisIon beam scanning electron microscopy
1998
Characterization of dacC, Which Encodes a New Low-Molecular-Weight Penicillin-Binding Protein in Bacillus subtilis
Pedersen L, Murray T, Popham D, Setlow P. Characterization of dacC, Which Encodes a New Low-Molecular-Weight Penicillin-Binding Protein in Bacillus subtilis. Journal Of Bacteriology 1998, 180: 4967-4973. PMID: 9733705, PMCID: PMC107527, DOI: 10.1128/jb.180.18.4967-4973.1998.Peer-Reviewed Original ResearchConceptsWeight penicillin-binding proteinsPenicillin-binding proteinsBacillus subtilis genome sequencing projectB. subtilis chromosomeGenome sequencing projectsWild-type cellsWild-type sporesInsertional mutantsPenicillin binding proteinsSequencing projectsSequence homologyUnknown functionBacillus subtilisEscherichia coliGenesPBP genesProteinSame heat resistanceOutgrowth kineticsExpressionSigmaHMutantsChromosomesHomologyPromoter
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