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The peptide microarray "ChloroPhos1.0" identifies new phosphorylation targets of plastid casein kinase II (pCKII) in Arabidopsis thaliana.The Chloroplast SRP Systems of Chaetosphaeridium globosum and Physcomitrella patens as Intermediates in the Evolution of SRP-Dependent Protein Transport in Higher Plants.Mechanisms of protein import into thylakoids of chloroplasts.Component interactions, regulation and mechanisms of chloroplast signal recognition particle-dependent protein transport.Interaction studies between the chloroplast signal recognition particle subunit cpSRP43 and the full-length translocase Alb3 reveal a membrane-embedded binding region in Alb3 proteinFrom bacteria to chloroplasts: evolution of the chloroplast SRP system.Arabidopsis thaliana mutants lacking cpFtsY or cpSRP54 exhibit different defects in photosystem II repair.Chloroplast SRP54 Was Recruited for Posttranslational Protein Transport via Complex Formation with Chloroplast SRP43 during Land Plant Evolution.Chloroplast SecY is complexed to SecE and involved in the translocation of the 33-kDa but not the 23-kDa subunit of the oxygen-evolving complex.Chloroplast FtsY, chloroplast signal recognition particle, and GTP are required to reconstitute the soluble phase of light-harvesting chlorophyll protein transport into thylakoid membranes.The thylakoid membrane protein ALB3 associates with the cpSecY-translocase in Arabidopsis thaliana.Functional analysis of the protein-interacting domains of chloroplast SRP43.The Arabidopsis thylakoid protein PAM68 is required for efficient D1 biogenesis and photosystem II assembly.Evolutionary substitution of two amino acids in chloroplast SRP54 of higher plants cause its inability to bind SRP RNA.Functional divergence of the plastid and cytosolic forms of the 54-kDa subunit of signal recognition particle.A complex containing PGRL1 and PGR5 is involved in the switch between linear and cyclic electron flow in Arabidopsis.In vitro reconstitution of co-translational D1 insertion reveals a role of the cpSec-Alb3 translocase and Vipp1 in photosystem II biogenesis.A Chromodomain Protein Encoded by the Arabidopsis CAO Gene Is a Plant-Specific Component of the Chloroplast Signal Recognition Particle Pathway That Is Involved in LHCP TargetingMolecular mechanism of SRP-dependent light-harvesting protein transport to the thylakoid membrane in plantsA chromodomain protein encoded by the arabidopsis CAO gene is a plant-specific component of the chloroplast signal recognition particle pathway that is involved in LHCP targetingThe yeast split-ubiquitin system to study chloroplast membrane protein interactionsThe alpha-helix of the second chromodomain of the 43 kDa subunit of the chloroplast signal recognition particle facilitates binding to the 54 kDa subunitIsolation of Arabidopsis thylakoid membranes and their use for in vitro protein insertion or transport assaysThe Arabidopsis Tellurite resistance C protein together with ALB3 is involved in photosystem II protein synthesisA thylakoid membrane-bound and redox-active rubredoxin (RBD1) functions in de novo assembly and repair of photosystem IIRibosome-Associated Chloroplast SRP54 Enables Efficient Cotranslational Membrane Insertion of Key Photosynthetic Proteins
P50
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P50
description
onderzoeker
@nl
researcher
@en
հետազոտող
@hy
name
Danja Schuenemann
@ast
Danja Schuenemann
@en
Danja Schuenemann
@es
Danja Schuenemann
@nl
type
label
Danja Schuenemann
@ast
Danja Schuenemann
@en
Danja Schuenemann
@es
Danja Schuenemann
@nl
prefLabel
Danja Schuenemann
@ast
Danja Schuenemann
@en
Danja Schuenemann
@es
Danja Schuenemann
@nl
P106
P31
P496
0000-0001-8894-7685