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Journal of Bacteriology, October 2000, p. 5309-5316, Vol. 182, No. 19
Department of Biochemistry and Molecular
Biology, Eberly College of Science, The Pennsylvania State University,
University Park, Pennsylvania 16802-4500
Received 3 April 2000/Accepted 30 June 2000
Isf (iron-sulfur flavoprotein) from Methanosarcina
thermophila has been produced in Escherichia coli as
a dimer containing two 4Fe-4S clusters and two FMN (flavin
mononucleotide) cofactors. The deduced sequence of Isf contains six
cysteines (Cys 16, Cys 47, Cys 50, Cys 53, Cys 59, and Cys 180), four
of which (Cys 47, Cys 50, Cys 53, and Cys 59) comprise a motif with
high identity to a motif
(CX2CX2CX4-7C) present in all
homologous Isf sequences available in the databases. The spacing of the
motif is highly compact and atypical of motifs coordinating known
4Fe-4S clusters; therefore, all six cysteines in Isf from M. thermophila were altered to either alanine or serine to obtain
corroborating biochemical evidence that the motif coordinates the
4Fe-4S cluster and to further characterize properties of the cluster
dependent on ligation. All except the C16S variant were produced in
inclusion bodies and were void of iron-sulfur clusters and FMN.
Reconstitution of the iron-sulfur cluster and FMN was attempted for
each variant. The UV-visible spectra of all reconstituted variants
indicated the presence of iron-sulfur clusters and FMN. The reduced
C16A/S variants showed the same electron paramagnetic resonance (EPR) spectra as wild-type Isf, whereas the reduced C180A/S variants showed
EPR spectra identical to those of one of the two 4Fe-4S species present
in the wild-type Isf spectrum. Conversely, EPR spectra of the oxidized
C50A and C59A variants showed g values characteristic of a
3Fe-4S cluster. The spectra of the C47A and C53A variants indicated a
4Fe-4S cluster with g values and linewidths different from
those for the wild type. The combined results of this study support a
role for the novel CX2CX2CX4-7C
motif in ligating the 4Fe-4S clusters in Isf and Isf homologues.
0021-9193/00/$04.00+0
Copyright © 2000, American Society for Microbiology. All rights reserved.
Site-Specific Mutational Analysis of a Novel
Cysteine Motif Proposed To Ligate the 4Fe-4S Cluster in the Iron-Sulfur
Flavoprotein of the Thermophilic Methanoarchaeon
Methanosarcina thermophila
*
Corresponding author. Mailing address: Department of
Biochemistry and Molecular Biology, Eberly College of Science, The
Pennsylvania State University, 205 South Frear Laboratory, University
Park, PA 16802-4500. Phone and fax: (804) 863-5721. E-mail:
JGF3{at}psu.edu.
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