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ATPases Associated with diverse cellular Activities (AAA+) comprise a superfamily of proteins that are defined by the presence of the AAA+ domain containing canonical Walker A and B motifs required for ATP binding and hydrolysis. Members of this superfamily act on other proteins, DNA, RNA, or multicomponent complexes to affect their conformation or their assembly. There have been substantial advances in understanding the structure and mechanism of function of a large number of AAA+ proteins. In this Research Topic, review articles and original research papers discuss new aspects as well as provide a detailed overview of several AAA+ proteins, namely: ClpXP, Lon, ClpB, Hsp104, p97, AAA+ proteins of the proteasome, Rubisco activases, Torsin, Pontin, and Reptin.
ATPases Associated with diverse cellular Activities --- Hsp104 --- Torsin --- Pontin --- Lon --- Rubisco activase --- ClpXP --- Reptin --- p97 --- Proteasome
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ATPases Associated with diverse cellular Activities (AAA+) comprise a superfamily of proteins that are defined by the presence of the AAA+ domain containing canonical Walker A and B motifs required for ATP binding and hydrolysis. Members of this superfamily act on other proteins, DNA, RNA, or multicomponent complexes to affect their conformation or their assembly. There have been substantial advances in understanding the structure and mechanism of function of a large number of AAA+ proteins. In this Research Topic, review articles and original research papers discuss new aspects as well as provide a detailed overview of several AAA+ proteins, namely: ClpXP, Lon, ClpB, Hsp104, p97, AAA+ proteins of the proteasome, Rubisco activases, Torsin, Pontin, and Reptin.
ATPases Associated with diverse cellular Activities --- Hsp104 --- Torsin --- Pontin --- Lon --- Rubisco activase --- ClpXP --- Reptin --- p97 --- Proteasome
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Photosynthesis --- carbon dioxide --- chloroplasts --- genomes --- Transgenic plants --- Rubisco --- Biochemical pathways --- genetic engineering
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ATPases Associated with diverse cellular Activities (AAA+) comprise a superfamily of proteins that are defined by the presence of the AAA+ domain containing canonical Walker A and B motifs required for ATP binding and hydrolysis. Members of this superfamily act on other proteins, DNA, RNA, or multicomponent complexes to affect their conformation or their assembly. There have been substantial advances in understanding the structure and mechanism of function of a large number of AAA+ proteins. In this Research Topic, review articles and original research papers discuss new aspects as well as provide a detailed overview of several AAA+ proteins, namely: ClpXP, Lon, ClpB, Hsp104, p97, AAA+ proteins of the proteasome, Rubisco activases, Torsin, Pontin, and Reptin.
ATPases Associated with diverse cellular Activities --- Hsp104 --- Torsin --- Pontin --- Lon --- Rubisco activase --- ClpXP --- Reptin --- p97 --- Proteasome
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Pisum sativum --- ELISA --- Cell differentiation --- DNA. --- DNA --- proteins --- leaves --- Cotyledons --- Metabolism --- Plant developmental stages --- Rubisco --- mitosis --- Tissu --- Endoreduplication
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Potatoes --- Starch --- Escherichia coli --- Pectins --- Enzymes --- Biosynthesis --- genetic engineering --- Chemical composition --- Rubisco --- Rheological properties --- Transgenic plants --- gene expression --- breeding methods --- Amylose --- Amylopectin --- Anacystis nidulans
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Photosynthesis --- Pigments --- chloroplasts --- energy sources --- Oxidoreductions --- Energy metabolism --- carbon dioxide --- Rubisco --- C4 plants --- Biochemical pathways --- Respiration --- Palaeontology --- Succulent plants --- Calvin cycle --- Timiriazef --- Engelman --- Metabolisme cam
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chloroplasts --- genes --- Enzymes --- DNA. --- DNA --- Photosynthesis --- Molecular biology --- genetics --- Rubisco --- Plastids --- Amyloplast --- Carotenoids --- Cytochromes --- cells --- Plastide --- Adaptation chromatique --- PHOTOSYNTHETIC APPARATUS --- PHOTOSYSTEM I --- PHOTOSYSTEM II --- PHOTOSYNTHETIC BACTERIA --- CYTOCHROMES --- COOPLING FACTOR --- CYANOBACTERIA --- PHYCOBILISOMES --- CHLOROPHILLS --- CAROTENES AND CAROTENOIDS --- RUBISCO --- CHLOROPLASTS --- PHOTOREGULATION --- PLASTIDS --- ADAPTATION --- NUCLEO-CYTOPLASMIC INTERACTION --- CHLOROPLAST GENETIC --- MOLECULAR BIOLOGY --- FUNCTIONS --- SYNTHESIS --- PREPARATION --- DIFFERENTIATION
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Chimiotaxonomie --- chemotaxonomy --- Plante --- plants --- Électrophorèse --- Electrophoresis --- Phylogénie --- Phylogeny --- Enzymes --- Génétique moléculaire --- Molecular genetics --- Identification --- identification --- Génétique --- genetics --- Hybride --- Hybrids --- Rubisco --- Immunologie --- Immunology --- Plant chemotaxonomy --- Plant molecular biology --- Molecular phytobiology --- Phytobiology, Molecular --- Botany --- Molecular biology --- Chemical plant taxonomy --- Botanical chemistry --- Chemotaxonomy --- Plants --- Classification --- Plant chemotaxonomy. --- Plant molecular biology. --- Basic Sciences. Molecular Biology --- Plant Molecular Biology --- Plant Molecular Biology. --- PLANTS --- CHEMOTAXONOMY --- MOLECULAR SYSTEMATICS
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