31599 MoCF_BD superfamily
Thalassiosira pseudonana

Chromosome Product Transcript Start End Strand Short Name
31599 chr_1 MoCF_BD superfamily 1215248 1217638 + MoCF_BD superfamily
NCBI ID Ensembl Genomes exon ID
7451430 Thaps31599.3, Thaps31599.2, Thaps31599.1
Expression Profile Conditional Changes Cluster Dendrogram
Thaps_hclust_0147
Normalized Mean Residue
Thaps_bicluster_0045
0.44
(bd392) DEXDc
0.9455
NAD_binding_8 superfamily
0.944
(bd624) Glyco_transf_34 superfamily
0.9267
(bd1777) NA
0.91
(bd1949) NA
0.9007
(bd446) HrpA
0.8987
PIG-L
0.8915
RabGAP-TBC
0.8909
hypothetical protein
0.8826
hypothetical protein
0.8821
Name CD Accession Definition Superfamily Bitscore E-Value From - To Hit Type PSSM ID
PAPS_reductase This domain is found in phosphoadenosine phosphosulphate (PAPS) reductase enzymes or PAPS... cl00292 110.957 8.41E-28 167 - 328 specific 238846
AANH_like superfamily Adenine nucleotide alpha hydrolases superfamily including N type ATP PPases, ATP sulphurylases... - 110.957 8.41E-28 167 - 328 superfamily 260331
MoCF_BD superfamily MoCF_BD: molybdenum cofactor (MoCF) binding domain (BD). This domain is found a variety of proteins... - 130.296 1.02E-34 392 - 567 superfamily 260429
CinA Predicted nucleotide-utilizing enzyme related to molybdopterin-biosynthesis enzyme MoeA [General... - 128.51 3.50E-33 392 - 651 multi-dom 223986
T. pseudonana P. tricornutum P. tricornutum DiatomCyc F. cylindrus Pseudo-nitzschia multiseries E. huxleyi C. reinhardtii A. thaliana P. sojae
Not available PHATRDRAFT_12894 PHATRDRAFT_12894 259092 175685 418514 Cre13.g592500.t1.1 AT5G03430.1 477086
KEGG description KEGG Pathway
Metabolic pathways map01100
GO:0006777 GO:0003919 -

Mo-molybdopterin cofactor biosynthetic process

Details: 
The chemical reactions and pathways resulting in the formation of the Mo-molybdopterin cofactor, essential for the catalytic activity of some enzymes. The cofactor consists of a mononuclear molybdenum (Mo) ion coordinated by one or two molybdopterin ligands.
GO Category: 
BP

FMN adenylyltransferase activity

Details: 
Catalysis of the reaction: ATP + FMN = diphosphate + FAD.
GO Category: 
MF
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