At2g46110


Description : 3-methyl-2-oxobutanoate hydroxymethyltransferase 1, mitochondrial [Source:UniProtKB/Swiss-Prot;Acc:O82357]


Gene families : OG_42_0004399 (Orthogroups_2024-Update) Phylogenetic Tree(s): OG0004399_tree

Sequence : coding (download), protein (download)


Attention: This gene has low abundance.


Note:Only the main profile, including all conditions, is shown. Additional statistics and tissue specific profiles are available here.


Type Description Actions
Neighborhood Arabidopsis release: At2g46110
Cluster HCCA clusters: Cluster_115


Type GO Term Name Evidence Source
MF GO:0003864 3-methyl-2-oxobutanoate hydroxymethyltransferase activity IEA InterProScan predictions
BP GO:0015940 pantothenate biosynthetic process IEA InterProScan predictions
Type GO Term Name Evidence Source
MF GO:0004363 glutathione synthase activity IEP Predicted GO
MF GO:0004427 inorganic diphosphatase activity IEP Predicted GO
MF GO:0004652 polynucleotide adenylyltransferase activity IEP Predicted GO
MF GO:0004834 tryptophan synthase activity IEP Predicted GO
MF GO:0005534 galactose binding IEP Predicted GO
BP GO:0006275 regulation of DNA replication IEP Predicted GO
BP GO:0006568 tryptophan metabolic process IEP Predicted GO
BP GO:0006586 indolalkylamine metabolic process IEP Predicted GO
BP GO:0006749 glutathione metabolic process IEP Predicted GO
BP GO:0006750 glutathione biosynthetic process IEP Predicted GO
BP GO:0008156 negative regulation of DNA replication IEP Predicted GO
MF GO:0009678 hydrogen-translocating pyrophosphatase activity IEP Predicted GO
BP GO:0009890 negative regulation of biosynthetic process IEP Predicted GO
BP GO:0010558 negative regulation of macromolecule biosynthetic process IEP Predicted GO
MF GO:0016603 glutaminyl-peptide cyclotransferase activity IEP Predicted GO
MF GO:0016614 oxidoreductase activity, acting on CH-OH group of donors IEP Predicted GO
MF GO:0016616 oxidoreductase activity, acting on the CH-OH group of donors, NAD or NADP as acceptor IEP Predicted GO
MF GO:0016624 oxidoreductase activity, acting on the aldehyde or oxo group of donors, disulfide as acceptor IEP Predicted GO
MF GO:0016755 transferase activity, transferring amino-acyl groups IEP Predicted GO
MF GO:0016881 acid-amino acid ligase activity IEP Predicted GO
BP GO:0017186 peptidyl-pyroglutamic acid biosynthetic process, using glutaminyl-peptide cyclotransferase IEP Predicted GO
BP GO:0018199 peptidyl-glutamine modification IEP Predicted GO
BP GO:0019184 nonribosomal peptide biosynthetic process IEP Predicted GO
BP GO:0031324 negative regulation of cellular metabolic process IEP Predicted GO
BP GO:0031327 negative regulation of cellular biosynthetic process IEP Predicted GO
MF GO:0035091 phosphatidylinositol binding IEP Predicted GO
BP GO:0042430 indole-containing compound metabolic process IEP Predicted GO
BP GO:0043631 RNA polyadenylation IEP Predicted GO
BP GO:0045005 DNA-dependent DNA replication maintenance of fidelity IEP Predicted GO
BP GO:0045934 negative regulation of nucleobase-containing compound metabolic process IEP Predicted GO
MF GO:0046912 transferase activity, transferring acyl groups, acyl groups converted into alkyl on transfer IEP Predicted GO
MF GO:0048029 monosaccharide binding IEP Predicted GO
BP GO:0048478 replication fork protection IEP Predicted GO
BP GO:0051052 regulation of DNA metabolic process IEP Predicted GO
BP GO:0051053 negative regulation of DNA metabolic process IEP Predicted GO
BP GO:0051172 negative regulation of nitrogen compound metabolic process IEP Predicted GO
MF GO:0051536 iron-sulfur cluster binding IEP Predicted GO
MF GO:0051540 metal cluster binding IEP Predicted GO
MF GO:0070566 adenylyltransferase activity IEP Predicted GO
BP GO:0090329 regulation of DNA-dependent DNA replication IEP Predicted GO
BP GO:2000104 negative regulation of DNA-dependent DNA replication IEP Predicted GO
BP GO:2000113 negative regulation of cellular macromolecule biosynthetic process IEP Predicted GO
InterPro domains Description Start Stop
IPR003700 Pantoate_hydroxy_MeTrfase 41 304
No external refs found!