Protein Domain : IPR013483

Type:  Family Name:  Molybdenum cofactor biosynthesis protein A
Description:  The majority of molybdenum-containing enzymes utilise a molybdenum cofactor (MoCF or Moco) consisting of a Mo atom coordinated via a cis-dithiolene moiety to molybdopterin (MPT). MoCF is ubiquitous in nature, and the pathway for MoCF biosynthesis is conserved in all three domains of life. MoCF-containing enzymes function as oxidoreductases in carbon, nitrogen, and sulphur metabolism [, ]. In Escherichia coli, biosynthesis of MoCF is a three stage process. It begins with the MoaA and MoaC conversion of GTP to the meta-stable pterin intermediate precursor Z. The second stage involves MPT synthase (MoaD and MoaE), which converts precursor Z to MPT; MoeB is involved in the recycling of MPT synthase. The final step in MoCF synthesis is the attachment of mononuclear Mo to MPT, a process that requires MoeA and which is enhanced by MogA in an Mg2 ATP-dependent manner []. MoCF is the active co-factor in eukaryotic and some prokaryotic molybdo-enzymes, but the majority of bacterial enzymes requiring MoCF, need a modification of MTP for it to be active; MobA is involved in the attachment of a nucleotide monophosphate to MPT resulting in the MGD co-factor, the active co-factor for most prokaryotic molybdo-enzymes. Bacterial two-hybrid studies have revealed the close interactions between MoeA, MogA, and MobA in the synthesis of MoCF []. Moreover the close functional association of MoeA and MogA in the synthesis of MoCF is supported by fact that the known eukaryotic homologues to MoeA and MogA exist as fusion proteins: CNX1 () of Arabidopsis thaliana(Mouse-ear cress), mammalian Gephryin (e.g. ) and Drosophila melanogaster(Fruit fly) Cinnamon () [].This entry represents the bacterial form of MoaA (molybdenum cofactor biosynthesis protein A). The MoaA protein is a member of the wider S-adenosylmethionine(SAM)-dependent enzyme family which catalyze the formation of protein and/or substrate radicals by reductive cleavage of SAM via a [4Fe-4S] cluster. Monomeric and homodimeric forms of MoaA have been observed in vivo, and it is not clear what the physiologically relevant form of the enzyme is []. The core of each monomer consists of an incomplete TIM barrel, formed by the N-terminal region of the protein, containing a [4Fe-4S]cluster. The C-terminal region of the protein, which also contains a [4Fe-4S] cluster consists of a beta-sheet covering the lateral opening of the barrel, an extended loop and three alpha helices. The N-terminal [4Fe-4S]cluster is coordinated with 3 cysteines and an exchangeable SAM molecule, while the C-terminal [4Fe-4S], also coordinated with 3 cysteines, is the binding and activation site for GTP []. Short Name:  MoaA

0 Child Features

4 Contains

DB identifier Type Name
IPR013785 Domain Aldolase-type TIM barrel
IPR006638 Domain Elongator protein 3/MiaB/NifB
IPR010505 Domain Molybdenum cofactor synthesis C-terminal
IPR000385 Conserved_site MoaA/nifB/pqqE, iron-sulphur binding, conserved site

2 Cross Referencess

Identifier
TIGR02666
MF_01225_B

0 Found In

2 GO Annotations

GO Term Gene Name
GO:0046872 IPR013483
GO:0006777 IPR013483

2 Ontology Annotations

GO Term Gene Name
GO:0046872 IPR013483
GO:0006777 IPR013483

0 Parent Features

641 Proteins

DB identifier UniProt Accession Secondary Identifier Organism Name Length
79056 D8QWC0 PAC:15421338 Selaginella moellendorffii 386  
evm.model.supercontig_189.4 PAC:16411816 Carica papaya 395  
30226.m002030 B9REL9 PAC:16824273 Ricinus communis 390  
Cucsa.049940.1 A0A0A0K648 PAC:16954028 Cucumis sativus 403  
Cucsa.049940.2 A0A0A0K648 PAC:16954029 Cucumis sativus 403  
Cucsa.049940.3 A0A0A0K648 PAC:16954030 Cucumis sativus 403  
orange1.1g015786m A0A067E464 PAC:18106412 Citrus sinensis 400  
orange1.1g022377m A0A067DSQ4 PAC:18106414 Citrus sinensis 298  
orange1.1g015808m A0A067E464 PAC:18106413 Citrus sinensis 400  
AT2G31955.1 Q39055 PAC:19639513 Arabidopsis thaliana 390  
AT2G31955.3 Q39055 PAC:19639515 Arabidopsis thaliana 382  
AT2G31955.2 Q39055 PAC:19639514 Arabidopsis thaliana 390  
Thhalv10016791m V4MGT7 PAC:20181269 Eutrema salsugineum 384  
Ciclev10031725m V4VI22 PAC:20803675 Citrus clementina 400  
Ciclev10031726m V4VI22 PAC:20803674 Citrus clementina 400  
Lus10008908 PAC:23144215 Linum usitatissimum 399  
Lus10006989 PAC:23165413 Linum usitatissimum 398  
Potri.009G024100.3 PAC:26987323 Populus trichocarpa 356  
Potri.009G024100.1 A0A2K1Z1L0 PAC:26987322 Populus trichocarpa 400  
Gorai.004G013400.1 A0A0D2QXC4 PAC:26774020 Gossypium raimondii 376  
Gorai.004G013400.2 A0A0D2QXC4 PAC:26774019 Gossypium raimondii 376  
24726 I0YT67 PAC:27391556 Coccomyxa subellipsoidea C-169 327  
70905 C1MRJ7 PAC:27346577 Micromonas pusilla CCMP1545 444  
83859 C1EBA6 PAC:27404580 Micromonas sp RCC299 365  
50634 A4S3I3 PAC:27416141 Ostreococcus lucimarinus 336  
Thecc1EG038739t1 A0A061GX89 PAC:27427636 Theobroma cacao 377  
Thecc1EG038739t3 A0A061GX89 PAC:27427637 Theobroma cacao 377  
Thecc1EG038739t4 A0A061GPF3 PAC:27427638 Theobroma cacao 354  
Migut.I00539.1.p PAC:28930631 Mimulus guttatus 397  
Migut.I00539.3.p PAC:28930632 Mimulus guttatus 354  

7 Publications

First Author Title Year Journal Volume Pages PubMed ID
            15317939
            12372836
            8528286
            12114025
            17198377
            16784786
            16632608