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1 ed pcb gene encoding a photosystem II (PSII) antenna protein.
2 EL trap to study an important photosynthetic antenna protein, Allophycocyanin (APC).
3 nables the direct analysis of phycobilisomal antenna proteins and report on numerous metabolites from
4 ient, the organization of the photosystem II antenna proteins and the reversible binding of a specifi
5 nthin (Dt); and (3) specific nucleus-encoded antenna proteins, called Light Harvesting Complex Protei
6                               Photosynthetic antenna proteins can be thought of as "programmed solven
7 les and the composition of energy harvesting antenna protein complexes are needed to understand how e
8 conformational and electronic changes at the antenna protein complexes as a response to specific chem
9        Phosphorylation of the photosystem II antenna protein CP29 has been reported to be induced by
10 enna complex, the Fenna-Matthews-Olson (FMO) antenna protein from green sulfur bacteria, completely l
11 s I and III of chlorophyll a/b-binding (Cab) antenna proteins from higher plants.
12 membrane-attached Fenna-Matthews-Olson (FMO) antenna protein functions as a "wire" to connect the lar
13 ation of allophycocyanin (APC), an important antenna protein in cyanobacteria.
14                      Two chlorophyll-binding antenna proteins in the photosystem II core, CP43 and CP
15  major chlorophyll-binding, light-harvesting antenna proteins in this genus, are present in multiple
16 were found to be well coordinated within the antenna proteins in vivo, arguing against the possibilit
17 ssociated core antenna domains and accessory antenna proteins (IsiA, PcbA, PcbC) arose from duplicati
18 ond defect in the mutant, namely in CP26, an antenna protein known to be required for the formation o
19 eraging, we investigate the purple bacterial antenna protein light harvesting complex 2 (LH2) from Rh
20  altered in the presence of the fluorescent (antenna) proteins, lumazine protein (LumP) from Photobac
21 nd to CP43, a constitutively expressed Chl a antenna protein of photosystem II.
22 SI) of cyanobacteria and plastids, plus core antenna proteins of photosystem II (PSII) from cyanobact
23                                          The antenna proteins of photosystem II have an intriguing du
24 ported a single phylogeny in which PSII core antenna proteins (PsbC, PsbB) arose within the cyanobact
25 one iron-stress-induced pcb gene encoding an antenna protein serving photosystem I (PSI)--comparable
26 rometry analysis to be mainly photosystem II antenna proteins, such as LIGHT-HARVESTING COMPLEX B (LH
27 cteria, RC2 is associated with separate core antenna proteins that are homologous to the core antenna
28 ously known function as one of the core PSII antenna proteins, this work demonstrates that Loop E of

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