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ribU [2017-05-09 15:36:35]
riboflavin ECF transporter, S protein
function
riboflavin uptake
product
S protein of riboflavin ECF transporter
Genomic Context
categories
[category|SW 1|Cellular processes] → [category|SW 1.2|Transporters] → [category|SW 1.2.3|ECF transporter][category|SW 1|Cellular processes] → [category|SW 1.2|Transporters] → [category|SW 1.2.3|ECF transporter] → [category|SW 1.2.3.2|The substrate-specific S components of the ECF transporters][category|SW 2|Metabolism] → [category|SW 2.6|Additional metabolic pathways] → [category|SW 2.6.2|Biosynthesis of cofactors] → [category|SW 2.6.2.2|Biosynthesis/ acquisition of riboflavin/ FAD][category|SW 6|Groups of genes] → [category|SW 6.2|Membrane proteins]Gene
Coordinates
2,410,017 → 2,410,589
The protein
Structure
[PDB|3P5N] (RibU from ''Staphylococcus aureus'')[SW|Localization]
membraneExpression and Regulation
Operons
genes
[gene|651C370386E9FB45E3B98001800D342FEDB43E9A|ribU]
description
[Pubmed|21815947]
regulatory mechanism
[regulon|FMN-box|FMN-box]: transcription termination, via [protein|C245476CE35028167510F67153F392D91447553F|MgtE riboswitch], sequestration of the Shine-Dalgarno sequence in the presence of FMN or FMNH2, this is counter-acted upon binding of [protein|3D32B6C1DC9CAC615B02E14EA846648C3B0E61D6|RibR], in [regulon|FMN-box|FMN-box]regulation
expressed in the absence of FMN ([protein|search|FMN-box]) [Pubmed|17693491]additional information
the mRNA is substantially stabilized upon depletion of [gene|872CCB5A49C9000BD95E4B0472556D5F60F7D7A4|RNase Y] [PubMed|21815947]view in new tabBiological materials
Mutant
MGNA-A478 (ypaA::erm), available at the [https://shigen.nig.ac.jp/bsub/resource/strainGeneDisrupted/detail/478 NBRP B. subtilis, Japan]References
Reviews
20497229,22574898,24362466 Original publications
12456892,20972419,17693491,21815947,24356467,24755604,25438558,26494285,27312125