Biochemical Journal 1982-06-15

The effects of high concentrations of salts on photosynthetic electron transport in spinach (Spinacia oleracea) chloroplasts.

A C Stewart

Index: Biochem. J. 204(3) , 705-12, (1982)

Full Text: HTML

Abstract

1. Photosynthetic electron transport from water to lipophilic Photosystem II acceptors was stimulated 3--5-fold by high concentrations (greater than or equal to 1 M) of salts containing anions such as citrate, succinate and phosphate that are high in the Hofmeister series. 2. In trypsin-treated chloroplasts, K3Fe(CN)6 reduction insensitive to 3-(3,4-dichlorophenyl)-1,1-dimethylurea was strongly stimulated by high concentrations of potassium citrate, but there was much less stimulation of 2,6-dichloroindophenol reduction in Tris-treated chloroplasts supplied with 1,5-diphenylcarbazide as artificial donor. The results suggest that the main site of action of citrate was the O2-evolving complex of Photosystem II. 3. Photosystem I partial reactions were also stimulated by intermediate concentrations of citrate (up to 2-fold stimulation by 0.6--0.8 M-citrate), but were inhibited at the highest concentrations. The observed stimulation may have been caused by stabilizaton of plastocyanin that was complexed with the Photosystem I reaction centre, 4. At 1 M, potassium citrate protected O2 evolution against denaturation by heat or by the chaotropic agent NaNO3. 5. It is suggested that anions high in the Hofmeister series stimulated and stabilized electron transport by enhancing water structure around the protein complexes in the thylakoid membrane.


Related Compounds

Related Articles:

Isolation and characterizations of quinone analogue-resistant mutants of bo-type ubiquinol oxidase from Escherichia coli.

1998-09-15

[Biochemistry 37(37) , 12744-52, (1998)]

Redox characteristics of a de novo quinone protein.

2007-04-05

[J. Phys. Chem. B 111(13) , 3488-95, (2007)]

Photolabile ubiquinone analogues for identification and characterization of quinone binding sites in proteins

2010-01-01

[Bioorg. Med. Chem. 18 , 3457-66, (2010)]

On becoming a parasite: evaluating the role of wall oxidases in parasitic plant development.

1998-02-01

[Chem. Biol. 5(2) , 103-17, (1998)]

Sonochemistry of quinones in argon-saturated aqueous solutions: enhanced cytochrome c reduction.

1999-09-01

[Chem. Res. Toxicol. 12(9) , 850-4, (1999)]

More Articles...