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Light-harvesting complex reconstitution

Cammarata KV, Plumley FG and Schmidt GW (1992) Pigment and protein composition of reconstituted light-harvesting complexes and effects of some protein modifications. Photosynth Res 33 235-250... [Pg.35]

Little is known about the role of carotenoids in the assembly of Chi c-containing algal light-harvesting complexes. The Chi a, c-containing LHCII of the prasinophyte Mantoniella squamata has been reconstituted in vitro from the denatured native complex. This complex contains prasinoxanthin, violaxanthin, and neoxanthin but can also bind some externally added lutein (Meyer and Wilhelm, 1993). [Pg.130]

Davis CM, Bustamante PLand Loach PA (1995) Reconstitution of thebacteri al core light-harvesting complexes of R/jodohader sphaeroides and Rhodospirillum rubrum with isolated alpha-and beta-polypeptides, bacteriochlorophyll a, and carotenoid. J Biol Chem 270 5793-5804... [Pg.133]

Jrrsakova V and Reiss-Husson F (1994) A specific carotenoid is required for reconstitution of Xh Rubrivivax gelatinosus B875 light harvesting complex from its subunit form B820. FEBS Lett 353 151-154... [Pg.133]

Loach PA, Parkes-Loach PS, Davis CM and Heller BA (1994) Probing protein structural requirements for formation of the core light-harvesting complex ofphotosyntheticbacteriausing hybrid reconstitution methodology. Photosynth Res 40 231-245... [Pg.134]

In vitro reconstitution of the Photosystem I light harvesting complex LHCI 730 Heterodimerization is required for antenna pigment organization. Proc Nat. Acad Sci USA 94 7667-7672... [Pg.134]

Plumley EG and Schmidt GW (1987) Reconstitution of chlorophyll a/b light-harvesting complexes Xanthophyll-dependent assembly and energy transfer. Pnx Natl Acad Sd USA 84 146-150... [Pg.220]

RECONSTITUTION OF THE CORE LIGHT-HARVESTING COMPLEX OF PHOTOSYNTHETIC BACTERIA WITH SELECTED POLYPEPTIDES... [Pg.1031]

RECONSTITUTION OF LIGHT HARVESTING COMPLEXES APOPROTEIN BINDS CHLa, CHLb, AND XANTHOPHYLLS... [Pg.1299]

Reconstitution of the Core Light-Harvesting Complex of Photosynthetic Bacteria with... [Pg.3810]

Reconstitution of Light Harvesting Complexes A Single Apoprotein Binds CHLa, CHLb,... [Pg.3814]

Parkes-Loach PS, Sprinkle JR, and Loach PA. Reconstitution of the B873 Light-Harvesting Complex of Rhodospirillum-Rubmm from the Separately Isolated Alpha- Polypeptide and Beta-Polypeptide and Bacteriochlorophyll-A. Biochemistry 1988 27 21 %-2121. [Pg.62]

Loach PA, and Parkes-Loach PS. Structure-function relationships in core light-harvesting complexes (LHI) as determined by characterization of the structural subunit and by reconstitution experiments. In Anoxygenic photosynthetic bacteria, edited by Blankenship RE, Madigan MT, and Bauer CE. Kluwer, New York, 1995 437-471. [Pg.62]

Davis CM, Parkes-Loach PS, Cook CK, Meadows KA, Bandilla M, Scheer H, and Loach PA. Comparison of the structural requirements for bacteriochlorophyll binding in the core light-harvesting complexes of Rhodospirillum rubrum and Rhodobacter sphaeroides using reconstitution methodology with bacteriochlorophyll analogs. Biochemistry 1996 35 3072-3084. [Pg.62]

Kehoe JW, Meadows KA, Parkes-Loach PS, and Loach PA. Reconstitution of core light-harvesting complexes of photosynthetic bacteria using chemically synthesized polypeptides. 2. Determination of structural features that stabilize complex formation and their implications for the structure of the subunit complex. Biochemistry 1998 37 3418-3428. [Pg.62]

Todd JB, Recchia PA, Parkes-Loach PS, Olsen JD, Fowler GJS, McGlynn P, Hunter CN, and Loach PA. Minimal requirements for in vitro reconstitution of the structural subunit of light-harvesting complexes of photosynthetic bacteria. Photosynth. Res. 1999 62 85-98. [Pg.63]

Parkes-Loach PS, Law CJ, Recchia PA, Kehoe J, Nehrlich S, Chen J and Loach PA. Role of the core region of the PufX protein in inhibition of reconstitution of the core light-harvesting complexes of Rhodobacter sphaeroides and Rhodobacter capsulatus. Biochemistry 2001 40 5593-5601. [Pg.92]

Krupa Z, Williams JP, and Huner, NPA. The role of aeyl lipids in reconstitution of lipid-depleted light harvesting complex II from cold hardened and nonhardened rye. Plant Physiol. 1992 100 931-938. [Pg.136]

L. N. Liu, T. J. Aartsma, and R. N. Frese, Dimers of light-harvesting complex 2 from Rhodobacter sphaeroides characterized in reconstituted 2D crystals with atomic force microscopy, EEBS /., 275, 3157-3166 (2008). [Pg.676]

I.J. Ryrie and N. Fuad, Membrane adhesion in reconstituted proteoliposomes containing the light-harvesting chlorophyll a/b-protein complex the role of charged surface groups, Arch. Biochem. Biophys. 214 (1982) 475-488. [Pg.288]


See other pages where Light-harvesting complex reconstitution is mentioned: [Pg.209]    [Pg.458]    [Pg.458]    [Pg.36]    [Pg.123]    [Pg.123]    [Pg.124]    [Pg.125]    [Pg.126]    [Pg.130]    [Pg.134]    [Pg.243]    [Pg.244]    [Pg.1031]    [Pg.1032]    [Pg.1300]    [Pg.2613]    [Pg.51]    [Pg.62]    [Pg.106]    [Pg.11]    [Pg.2362]    [Pg.213]    [Pg.222]    [Pg.36]    [Pg.127]    [Pg.130]    [Pg.133]   


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