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Journal of Bacteriology, November 2001, p. 6429-6434, Vol. 183, No. 21
Membran Protein Gruppe, Institut für
Physikalische Chemie der Universität Wien, A-1090 Vienna,
Austria,1 and Instituto de
Bioquímica Vegetal y Fotosíntesis, CSIC
Received 22 February 2001/Accepted 7 August 2001
Three genes, coxB, coxA, and coxC, found in
a clone from a gene library of the cyanobacterium
Anabaena variabilis strain ATCC 29413, were
identified by hybridization with an oligonucleotide specific for
aa3-type cytochrome c oxidases.
Deletion of these genes from the genome of A. variabilis
strain ATCC 29413 FD yielded strain CSW1, which displayed no
chemoheterotrophic growth and an impaired cytochrome c
oxidase activity. Photoautotrophic growth of CSW1, however, was
unchanged, even with dinitrogen as the nitrogen source. A higher
cytochrome c oxidase activity was detected in membrane
preparations from dinitrogen-grown CSW1 than from nitrate-grown CSW1,
but comparable activities of respiratory oxygen uptake were found in
the wild type and in CSW1. Our data indicate that the identified
cox gene cluster is essential for fructose-dependent growth
in the dark, but not for growth on dinitrogen, and that other terminal
respiratory oxidases are expressed in this cyanobacterium. Transcription analysis showed that coxBAC constitutes an
operon which is expressed from two transcriptional start points. The use of one of them was stimulated by fructose.
0021-9193/01/$04.00+0 DOI: 10.1128/JB.183.21.6429-6434.2001
Copyright © 2001, American Society for Microbiology. All rights reserved.
The coxBAC Operon Encodes a Cytochrome
c Oxidase Required for Heterotrophic Growth in the
Cyanobacterium Anabaena variabilis Strain
ATCC 29413
Universidad de
Sevilla, E-41092 Seville, Spain2
*
Corresponding author. Mailing address: Institute
of Physical Chemistry, UZA2, Althanstrasse 14, A-1090
Vienna, Austria. Phone: 43-1-4277-52548. Fax: 43-1-4277-52546. E-mail:
georg.schmetterer{at}univie.ac.at.
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