Literature DB >> 15304514

Early steps in the assembly of light-harvesting chlorophyll a/b complex: time-resolved fluorescence measurements.

Ruth Horn1, Harald Paulsen.   

Abstract

The light-harvesting chlorophyll a/b complex (LHCIIb) spontaneously assembles from its pigment and protein components in detergent solution. The formation of functional LHCIIb can be detected in time-resolved experiments by monitoring the establishment of excitation energy transfer from protein-bound chlorophyll b to chlorophyll a. To detect the possible initial steps of chlorophyll binding that may not yet give rise to chlorophyll b-to-a energy transfer, we have monitored LHCIIb assembly by measuring excitation energy transfer from a fluorescent dye, covalently bound to the protein, to the chlorophylls. In order to exclude interference of the dye with protein folding or pigment binding, the experiments were repeated with the dye bound to four different positions in the protein. Initial chlorophyll binding occurs at roughly the same rate as the establishment of chlorophyll b-to-a energy transfer, in the range of 10 s. However, under limiting chlorophyll concentrations, the binding of chlorophyll a clearly precedes that of chlorophyll b. The complex containing the apoprotein, carotenoids, and chlorophyll a but no chlorophyll b is biochemically unstable and therefore cannot be isolated. However, chlorophyll a binding into this weak complex is specific, as it does not occur with a C-terminal deletion mutant of Lhcb1 which still contains most chlorophyll-ligating amino acids but is unable to fold and assemble into functional LHCIIb. As a scenario for LHCIIb assembly in the thylakoid, we propose the initial formation of a labile Lhcb1-chlorophyll a-carotenoid complex that then becomes stabilized by the binding (or formation in situ) of chlorophyll b.

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Year:  2004        PMID: 15304514     DOI: 10.1074/jbc.M407188200

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  14 in total

1.  The effect of loops on the structural organization of alpha-helical membrane proteins.

Authors:  Oznur Tastan; Judith Klein-Seetharaman; Hagai Meirovitch
Journal:  Biophys J       Date:  2009-03-18       Impact factor: 4.033

2.  Occupancy and functional architecture of the pigment binding sites of photosystem II antenna complex Lhcb5.

Authors:  Matteo Ballottari; Milena Mozzo; Roberta Croce; Tomas Morosinotto; Roberto Bassi
Journal:  J Biol Chem       Date:  2009-01-07       Impact factor: 5.157

3.  Refolding of the integral membrane protein light-harvesting complex II monitored by pulse EPR.

Authors:  Christoph Dockter; Aleksei Volkov; Christian Bauer; Yevhen Polyhach; Zoé Joly-Lopez; Gunnar Jeschke; Harald Paulsen
Journal:  Proc Natl Acad Sci U S A       Date:  2009-10-15       Impact factor: 11.205

4.  Participation of chlorophyll b reductase in the initial step of the degradation of light-harvesting chlorophyll a/b-protein complexes in Arabidopsis.

Authors:  Yukiko Horie; Hisashi Ito; Makoto Kusaba; Ryouichi Tanaka; Ayumi Tanaka
Journal:  J Biol Chem       Date:  2009-04-29       Impact factor: 5.157

5.  The small CAB-like proteins of Synechocystis sp. PCC 6803 bind chlorophyll. In vitro pigment reconstitution studies on one-helix light-harvesting-like proteins.

Authors:  Patrik Storm; Miguel A Hernandez-Prieto; Laura L Eggink; J Kenneth Hoober; Christiane Funk
Journal:  Photosynth Res       Date:  2008-10-03       Impact factor: 3.573

6.  Stay-green protein, defective in Mendel's green cotyledon mutant, acts independent and upstream of pheophorbide a oxygenase in the chlorophyll catabolic pathway.

Authors:  Sylvain Aubry; Jan Mani; Stefan Hörtensteiner
Journal:  Plant Mol Biol       Date:  2008-06       Impact factor: 4.076

7.  Rice NON-YELLOW COLORING1 is involved in light-harvesting complex II and grana degradation during leaf senescence.

Authors:  Makoto Kusaba; Hisashi Ito; Ryouhei Morita; Shuichi Iida; Yutaka Sato; Masaru Fujimoto; Shinji Kawasaki; Ryouichi Tanaka; Hirohiko Hirochika; Minoru Nishimura; Ayumi Tanaka
Journal:  Plant Cell       Date:  2007-04-06       Impact factor: 11.277

8.  Pheophytin pheophorbide hydrolase (pheophytinase) is involved in chlorophyll breakdown during leaf senescence in Arabidopsis.

Authors:  Silvia Schelbert; Sylvain Aubry; Bo Burla; Birgit Agne; Felix Kessler; Karin Krupinska; Stefan Hörtensteiner
Journal:  Plant Cell       Date:  2009-03-20       Impact factor: 11.277

9.  Enhanced stability of thylakoid membrane proteins and antioxidant competence contribute to drought stress resistance in the tasg1 wheat stay-green mutant.

Authors:  Fengxia Tian; Jiangfeng Gong; Jin Zhang; Meng Zhang; Guokun Wang; Aixiu Li; Wei Wang
Journal:  J Exp Bot       Date:  2013-02-01       Impact factor: 6.992

Review 10.  Chlorophylls, ligands and assembly of light-harvesting complexes in chloroplasts.

Authors:  J Kenneth Hoober; Laura L Eggink; Min Chen
Journal:  Photosynth Res       Date:  2007-05-16       Impact factor: 3.573

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