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3.A.1.14.1
Iron (Fe3+) or ferric-dicitrate porter, FecBCDE (Braun and Herrmann, 2007). The Mycobacterium tuberculosis (Mtb) ortholog has two substrate binding proteins, FecB and FecB2 (de Miranda et al. 2023).  The crystallographic structures of Mtb FecB and FecB2 were determined to 2.0 Å and 2.2 Å resolution, respectively, and they show distinct ligand binding pockets. In vitro ligand binding experiments for FecB and FecB2 were performed with heme and bacterial siderophores from Mtb and other species, revealing that both FecB and FecB2 bind heme, while only FecB binds the Mtb sideophore ferric-carboxymycobactin (Fe-cMB). Subsequent structure-guided mutagenesis of FecB identified a single glutamate residue-Glu339-that significantly contributes to Fe-cMB binding (de Miranda et al. 2023).

Accession Number:P15029
Protein Name:FecD aka B4288
Length:318
Molecular Weight:34131.00
Species:Escherichia coli [83333]
Number of TMSs:10
Location1 / Topology2 / Orientation3: Cell inner membrane1 / Multi-pass membrane protein2
Substrate

Cross database links:

RefSeq: AP_004778.1    NP_418708.1   
Entrez Gene ID: 946816   
Pfam: PF01032   
BioCyc: EcoCyc:FECD-MONOMER    ECOL168927:B4288-MONOMER   
KEGG: ecj:JW4248    eco:b4288   

Gene Ontology

GO:0016021 C:integral to membrane
GO:0005886 C:plasma membrane
GO:0005215 F:transporter activity
GO:0006826 P:iron ion transport

References (5)

[1] “Nucleotide sequences of the fecBCDE genes and locations of the proteins suggest a periplasmic-binding-protein-dependent transport mechanism for iron(III) dicitrate in Escherichia coli.”  Staudenmaier H.et.al.   2651410
[2] “Analysis of the Escherichia coli genome VI: DNA sequence of the region from 92.8 through 100 minutes.”  Burland V.D.et.al.   7610040
[3] “The complete genome sequence of Escherichia coli K-12.”  Blattner F.R.et.al.   9278503
[4] “Highly accurate genome sequences of Escherichia coli K-12 strains MG1655 and W3110.”  Hayashi K.et.al.   16738553
[5] “Global topology analysis of the Escherichia coli inner membrane proteome.”  Daley D.O.et.al.   15919996

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Predict TMSs (Predict number of transmembrane segments)
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FASTA formatted sequence
1:	MKIALVIFIT LALAGCALLS LHMGVIPVPW RALLTDWQAG HEHYYVLMEY RLPRLLLALF 
61:	VGAALAVAGV LIQGIVRNPL ASPDILGVNH AASLASVGAL LLMPSLPVMV LPLLAFAGGM 
121:	AGLILLKMLA KTHQPMKLAL TGVALSACWA SLTDYLMLSR PQDVNNALLW LTGSLWGRDW 
181:	SFVKIAIPLM ILFLPLSLSF CRDLDLLALG DARATTLGVS VPHTRFWALL LAVAMTSTGV 
241:	AACGPISFIG LVVPHMMRSI TGGRHRRLLP VSALTGALLL VVADLLARII HPPLELPVGV 
301:	LTAIIGAPWF VWLLVRMR