Protein Domain : IPR000825

Type:  Family Name:  SUF system FeS cluster assembly, SufBD
Description:  Iron-sulphur (FeS) clusters are important cofactors for numerous proteins involved in electron transfer, in redox and non-redox catalysis, in gene regulation, and as sensors of oxygen and iron. These functions depend on the various FeS cluster prosthetic groups, the most common being [2Fe-2S] and [4Fe-4S][]. FeS cluster assembly is a complex process involving the mobilisation of Fe and S atoms from storage sources, their assembly into [Fe-S]form, their transport to specific cellular locations, and their transfer to recipient apoproteins. So far, three FeS assembly machineries have been identified, which are capable of synthesising all types of [Fe-S] clusters: ISC (iron-sulphur cluster), SUF (sulphur assimilation), and NIF (nitrogen fixation) systems.The ISC system is conserved in eubacteria and eukaryotes (mitochondria), and has broad specificity, targeting general FeS proteins [, ]. It is encoded by the isc operon (iscRSUA-hscBA-fdx-iscX). IscS is a cysteine desulphurase, which obtains S from cysteine (converting it to alanine) and serves as a S donor for FeS cluster assembly. IscU and IscA act as scaffolds to accept S and Fe atoms, assembling clusters and transfering them to recipient apoproteins. HscA is a molecular chaperone and HscB is a co-chaperone. Fdx is a [2Fe-2S]-type ferredoxin. IscR is a transcription factor that regulates expression of the isc operon. IscX (also known as YfhJ) appears to interact with IscS and may function as an Fe donor during cluster assembly [].The SUF system is an alternative pathway to the ISC system that operates under iron starvation and oxidative stress. It is found in eubacteria, archaea and eukaryotes (plastids). The SUF system is encoded by the suf operon (sufABCDSE), and the six encoded proteins are arranged into two complexes (SufSE and SufBCD) and one protein (SufA). SufS is a pyridoxal-phosphate (PLP) protein displaying cysteine desulphurase activity. SufE acts as a scaffold protein that accepts S from SufS and donates it to SufA []. SufC is an ATPase with an unorthodox ATP-binding cassette (ABC)-like component. No specific functions have been assigned to SufB and SufD. SufA is homologous to IscA [], acting as a scaffold protein in which Fe and S atoms are assembled into [FeS]cluster forms, which can then easily be transferred to apoproteins targets.In the NIF system, NifS and NifU are required for the formation of metalloclusters of nitrogenase in Azotobacter vinelandii, and other organisms, as well as in the maturation of other FeS proteins. Nitrogenase catalyses the fixation of nitrogen. It contains a complex cluster, the FeMo cofactor, which contains molybdenum, Fe and S. NifS is a cysteine desulphurase. NifU binds one Fe atom at its N-terminal, assembling an FeS cluster that is transferred to nitrogenase apoproteins []. Nif proteins involved in the formation of FeS clusters can also be found in organisms that do not fix nitrogen [].This entry represents SufB and SufD proteins that form part of the SufBCD complex in the SUF system. No specific functions have been assigned to these proteins. Short Name:  SUF_FeS_clus_asmbl_SufBD

2 Child Features

DB identifier Type Name
IPR010231 Family SUF system FeS cluster assembly, SufB
IPR011542 Family SUF system FeS cluster assembly, SufD

0 Contains

1 Cross References

Identifier
PF01458

0 Found In

1 GO Annotation

GO Term Gene Name
GO:0016226 IPR000825

1 Ontology Annotations

GO Term Gene Name
GO:0016226 IPR000825

0 Parent Features

743 Proteins

DB identifier UniProt Accession Secondary Identifier Organism Name Length
64073 D8R0R6 PAC:15421907 Selaginella moellendorffii 469  
85320 D8R5X1 PAC:15419178 Selaginella moellendorffii 464  
170465 D8RDB1 PAC:15406012 Selaginella moellendorffii 532  
evm.TU.contig_32163.1 PAC:16430066 Carica papaya 168  
evm.model.supercontig_198.44 PAC:16412409 Carica papaya 560  
evm.model.supercontig_90.55 PAC:16428420 Carica papaya 313  
29842.m003610 B9RXM8 PAC:16810741 Ricinus communis 553  
28481.m000021 B9T968 PAC:16800935 Ricinus communis 484  
Cucsa.313360.3 PAC:16976991 Cucumis sativus 394  
Cucsa.313360.4 PAC:16976992 Cucumis sativus 392  
Cucsa.313360.1 PAC:16976989 Cucumis sativus 495  
Cucsa.313360.2 PAC:16976990 Cucumis sativus 407  
Cucsa.085900.1 A0A0A0LS16 PAC:16956712 Cucumis sativus 554  
orange1.1g008725m A0A067GJE6 PAC:18114368 Citrus sinensis 556  
orange1.1g016848m A0A067DL01 PAC:18116336 Citrus sinensis 381  
orange1.1g013853m A0A067DHC0 PAC:18116335 Citrus sinensis 435  
orange1.1g022235m A0A067DUG3 PAC:18116337 Citrus sinensis 300  
orange1.1g011429m A0A067DGY3 PAC:18116334 Citrus sinensis 486  
AT4G04770.1 Q9ZS97 PAC:19643919 Arabidopsis thaliana 557  
AT5G44316.1 Q3E8H7 PAC:19669533 Arabidopsis thaliana 470  
AT1G32500.1 Q9LQK7 PAC:19656290 Arabidopsis thaliana 475  
Thhalv10028516m V4KJT9 PAC:20197903 Eutrema salsugineum 625  
Thhalv10022515m PAC:20200817 Eutrema salsugineum 422  
Thhalv10007401m V4KU49 PAC:20185567 Eutrema salsugineum 509  
Ciclev10014785m V4W7V4 PAC:20819207 Citrus clementina 556  
Ciclev10031360m V4TEE1 PAC:20805236 Citrus clementina 486  
Ciclev10031825m V4VCA8 PAC:20805237 Citrus clementina 381  
Lus10017374 PAC:23140236 Linum usitatissimum 477  
Lus10010168 PAC:23154235 Linum usitatissimum 480  
Lus10025788 PAC:23177668 Linum usitatissimum 541  

8 Publications

First Author Title Year Journal Volume Pages PubMed ID
            8875867
            11498000
            16221578
            16211402
            15278785
            16843540
            15937904
            17350000