Modomics - A Database of RNA Modifications

ID Card:

Full name: 23S rRNA 5-hydroxycytidine C2501 synthase
Synonym: ydcP
UniProt: P76104
Enzyme type:
Position of modification - modification: :2501(None) - ho5C
Level of experimental evidence: 3
Level of experimental reliability: 2



Protein sequence:

MTVSSHRLELLSPARDAAIAREAILHGADAVYIGGPGFGARHNASNSLKDIAELVPFAHRYGAKIFVTLNTILHDDELEPAQRLITDLYQTGVDALIVQDMGILELDIPPIELHASTQCDIRTVEKAKFLSDVGFTQIVLARELNLDQIRAIHQATDATIEFFIHGALCVAYSGQCYISHAQTGRSANRGDCSQACRLPYTLKDDQGRVVSYEKHLLSMKDNDQTANLGALIDAGVRSFKIEGRYKDMSYVKNITAHYRQMLDAIIEERGDLARASSGRTEHFFVPSTEKTFHRGSTDYFVNARKGDIGAFDSPKFIGLPVGEVVKVAKDHLDVAVTEPLANGDGLNVLIKREVVGFRANTVEKTGENQYRVWPNEMPADLHKIRPHHPLNRNLDHNWQQALTKTSSERRVAVDIELGGWQEQLILTLTSEEGVSITHTLDGQFDEANNAEKAMNNLKDGLAKLGQTLYYARDVQINLPGALFVPNSLLNQFRREAADMLDAARLASYQRGSRKPVADPAPVYPQTHLSFLANVYNQKAREFYHRYGVQLIDAAYEAHEEKGEVPVMITKHCLRFAFNLCPKQAKGNIKSWKATPMQLVNGDEVLTLKFDCRPCEMHVIGKIKNHILKMPLPGSVVASVSPDELLKTLPKRKG

Comments:

Responsible for the formation of the 5-hydroxycytidine modification at the C2501 position of 23S rRNA. May be a Fe-S protein that catalyzes ho5C2501 formation using prephenate as a hydroxyl group donor




Reaction Substrate SubstrateType Position (Anti)Codon Modified (Anti)Codon Amino Acid Change Transcript Name Transcript Region Cellular Localization References
C:ho5C rRNA (r) rRNA/rRNA/prokaryotic cytosol 2501



Publications:

Title Authors Journal Details PubMed Id DOI
Biogenesis and iron-dependency of ribosomal RNA hydroxylation. Kimura S; Sakai Y; Ishiguro K; Suzuki T Nucleic Acids Res [details] 29069499 10.1093/nar/gkx969