Rp. Garg et al., A [2FE-2S] PROTEIN ENCODED BY AN OPEN READING FRAME UPSTREAM OF THE ESCHERICHIA-COLI BACTERIOFERRITIN GENE, Biochemistry, 35(20), 1996, pp. 6297-6301
An open reading frame located upstream of the bacterioferritin gene in
Escherichia call encodes a hypothetical 64-residue protein [Andrews,
S. C., Harrison, P. C., & Guest, J. R. (1989) J. Bacterial. 171, 3940-
3947)]. The spacing of the four cysteine residues in this hypothetical
protein is identical to that in a region of NIFU, a [2Fe-2S] protein
found in nitrogen-fixing bacteria [Fu, W., Jack, R. F., Morgan, T, V.,
Dean, D. R., & Johnson, M. K. (1994) Biochemistry 33, 13455-13463)].
The NIFU-like E, call gene was cloned and overexpressed with a C-termi
nal ''His tag'' in E. call using the T7 RNA polymerase/ promoter syste
m, and the protein was purified by metal-chelate affinity chromatograp
hy. UV-vis absorption and EPR spectra together with iron and amino aci
d analyses conclusively established that this NIFU-like E, call protei
n contains one [2Fe-2S] cluster which can exist in at least two oxidat
ion levels: +2 for the as-purified protein, and +1 for dithionite-redu
ced protein, Size-exclusion chromatography established that this His-t
agged [2Fe-2S] protein is monomeric in solution. Affinity chromatograp
hy demonstrated specific complex formation between bacterioferritin (B
fr) and this NIFU-like [2Fe-2S] protein, which is dubbed Bfd. An open
reading frame encoding a homologous Bfd is located near a Bfr gene in
at least one other bacterium. Bfd may, therefore, constitute a general
redox and/or regulatory component participating in the iron storage o
r mobilization functions of Bfr.