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PMID: 10722690 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, Non-P.H.S.

Recruitment of a foreign quinone into the A(1) site of photosystem I. I. Genetic and physiological characterization of phylloquinone biosynthetic pathway mutants in Synechocystis sp. pcc 6803.

The Journal of biological chemistry ·Vol. 275 ·No. 12 ·2000-03-24 ·Pages 8523-30

Johnson TW, Shen G, Zybailov B, Kolling D, Reategui R, Beauparlant S, Vassiliev IR, Bryant DA, Jones AD, Golbeck JH, Chitnis PR

Abstract

Genes encoding enzymes of the biosynthetic pathway leading to phylloquinone, the secondary electron acceptor of photosystem (PS) I, were identified in Synechocystis sp. PCC 6803 by comparison with genes encoding enzymes of the menaquinone biosynthetic pathway in Escherichia coli. Targeted inactivation of the menA and menB genes, which code for phytyl transferase and 1,4-dihydroxy-2-naphthoate synthase, respectively, prevented the synthesis of phylloquinone, thereby confirming the participation of these two gene products in the biosynthetic pathway. The menA and menB mutants grow photoautotrophically under low light conditions (20 microE m(-2) s(-1)), with doubling times twice that of the wild type, but they are unable to grow under high light conditions (120 microE m(-2) s(-1)). The menA and menB mutants grow photoheterotrophically on media supplemented with glucose under low light conditions, with doubling times similar to that of the wild type, but they are unable to grow under high light conditions unless atrazine is present to inhibit PS II activity. The level of active PS II per cell in the menA and menB mutant strains is identical to that of the wild type, but the level of active PS I is about 50-60% that of the wild type as assayed by low temperature fluorescence, P700 photoactivity, and electron transfer rates. PS I complexes isolated from the menA and menB mutant strains contain the full complement of polypeptides, show photoreduction of F(A) and F(B) at 15 K, and support 82-84% of the wild type rate of electron transfer from cytochrome c(6) to flavodoxin. HPLC analyses show high levels of plastoquinone-9 in PS I complexes from the menA and menB mutants but not from the wild type. We propose that in the absence of phylloquinone, PS I recruits plastoquinone-9 into the A(1) site, where it functions as an efficient cofactor in electron transfer from A(0) to the iron-sulfur clusters.

MeSH Terms
Alkyl and Aryl Transferases/genetics Chlorophyll/metabolism Cyanobacteria/genetics,metabolism Electron Spin Resonance Spectroscopy Electron Transport Escherichia coli Proteins Flavodoxin/metabolism Genes, Bacterial Hydro-Lyases/genetics Intracellular Membranes Iron-Sulfur Proteins/metabolism Light Light-Harvesting Protein Complexes Mutation Phenotype Photosynthetic Reaction Center Complex Proteins/chemistry,metabolism,radiation effects Photosystem I Protein Complex Vitamin K 1/biosynthesis
Chemicals
Escherichia coli Proteins Flavodoxin Iron-Sulfur Proteins Light-Harvesting Protein Complexes Photosynthetic Reaction Center Complex Proteins Photosystem I Protein Complex Chlorophyll chlorophyll P 700 Vitamin K 1 Alkyl and Aryl Transferases phytyltransferase MenA protein, E coli Hydro-Lyases naphthoate synthetase
Authors & Affiliations
11 authors, click to expand affiliations / ORCID
Johnson T W
Department of Biochemistry, Biophysics and Molecular Biology, Iowa State University, Ames, Iowa 50011, USA.
Shen G
Zybailov B
Kolling D
Reategui R
Beauparlant S
Vassiliev I R
Bryant D A
Jones A D
Golbeck J H
Chitnis P R
Article Info
Journal
The Journal of biological chemistry
Abbr.
J Biol Chem
ISSN
0021-9258
Published
2000-03-24
Pages
8523-30
Language
English
Region
United States
NLM ID
2985121R
Subset
IM
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