A Third Bacterial System for the Assembly of Iron-Sulfur Clusters with Homologs in Archaea and Plastids
The assembly of iron-sulfur (Fe-S) clusters is mediated by complex machinery. In several proteobacteria, this process involves ISC (Fe-S cluster assembly) machinery composed of at least six components also conserved in mitochondria from lower to higher eukaryotes. In nitrogen-fixing bacteria, anothe...
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Veröffentlicht in: | The Journal of biological chemistry 2002-08, Vol.277 (32), p.28380-28383 |
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Sprache: | eng |
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Zusammenfassung: | The assembly of iron-sulfur (Fe-S) clusters is mediated by complex machinery. In several proteobacteria, this process involves
ISC (Fe-S cluster assembly) machinery composed of at least six components also conserved in mitochondria from lower to higher
eukaryotes. In nitrogen-fixing bacteria, another system, termed NIF (nitrogen fixation), is required for the maturation of
nitrogenase. Here we report the identification of a third system, designated the SUF machinery, the components of which are
encoded in Escherichia coli by an unassigned operon, sufABCDSE . We have analyzed spontaneous pseudorevertants isolated from a mutant strain lacking all the components of the ISC machinery.
The suppressor mutations in the revertants have been localized to the regulatory region of the suf operon; overexpression of this operon restores the growth phenotypes and activity of Fe-S proteins in mutant cells lacking
ISC. Disruption of the suf operon alone does not cause any major defects, but synthetic lethality was observed when both the isc and suf operons were inactivated. These results indicate that proteins encoded by the suf operon participate in the ISC-independent minor pathway for the assembly of Fe-S clusters. The genes homologous to sufBC are present in a wide range of bacteria, Archaea, and plastids, suggesting that this type of system is almost ubiquitous in
nature. |
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ISSN: | 0021-9258 1083-351X |
DOI: | 10.1074/jbc.C200365200 |