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Cellular differentiation and the NtcA transcription factor in filamentous cyanobacteria

Journal

FEMS MICROBIOLOGY REVIEWS
Volume 28, Issue 4, Pages 469-487

Publisher

OXFORD UNIV PRESS
DOI: 10.1016/j.femsre.2004.04.003

Keywords

cellular differentiation; cyanobacteria; heterocyst differentiation; nitrogen regulation; NtcA

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Some filamentous cyanobacteria can undergo a variety of cellular differentiation processes that permit their better adaptation to certain environmental conditions. These processes include the differentiation of hormogonia, short filaments aimed at the dispersal of the organism in the environment, of akinetes, cells resistant to various stress conditions, and of heterocysts, cells specialized in the fixation of atmospheric nitrogen in oxic environments. NtcA is a transcriptional regulator that operates global nitrogen control in cyanobacteria by activating (and in some cases repressing) many genes involved in nitrogen assimilation. NtcA is required for the triggering of heterocyst differentiation and for subsequent steps of its development and function. This requirement is based on the role of NtcA as an activator of the expression of hetR and other multiple genes at specific steps of the differentiation process. The products of these genes effect development as well as the distinct metabolism of the mature heterocyst. The different features found in the NitcA-dependent promoters, together with the cellular level of active NtcA protein, should have a role in the determination of the hierarchy of gene activation during the process of heterocyst differentiation. (C) 2004 Federation of European Microbiological Societies. Published by Elsevier B.V. All rights reserved.

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