⊟Summary[edit | edit source]
- pan ID?: SAUPAN006142000
- symbol?: —
- synonym:
- description?: DedA family protein
- DedA family protein
- DedA family membrane-associated protein
- alkaline phosphatase
- Alkaline phosphatase like protein
descriptions from strain specific annotations:
- strand?: +
- coordinates?: 6215989..6216600
- synteny block?: BlockID0048730
- occurrence?: in 100% of 34 strains
uptA : undecaprenyl-phosphate translocase A [1]
Staphylococci have three systems to recycle undecaprenyl-phosphate from the extracellular leaflet of the membrane to the cytoplasm-facing leaflet. After dephosphorylation from undecaprenyl-pyrophosphate to undecaprenyl-phosphate, either polyprenyl-phosphate translocase or undecaprenyl-phosphate translocase can recycle UndP to the inner leaflet. While the relative roles of each system are not fully elucidated, the DedA family translocase UptA appears to work under typical conditions to provide UndP recycling using a proton motive force. The third undecaprenyl-phosphate recycling system does contribute to UndP turnover but remains unnamed and is less well-characterized than the other two.
⊟Orthologs[edit | edit source]
⊟Genome Viewer[edit | edit source]
COL | |
N315 | |
NCTC8325 | |
Newman | |
USA300_FPR3757 |
⊟Alignments[edit | edit source]
- alignment of orthologues: CLUSTAL format alignment by MAFFT L-INS-i (v7.307)
COL MEQIITEFISRFGYAAIFILILLENVLPIVPSEIILTFAGLMSVKSHLSILTLFIIATIA
N315 MEQIITEFISRFGYAAIFILILLENVLPIVPSEIILTFAGLMSVKSHLSILTLFIIATIA
NCTC8325 MEQIITEFISRFGYAAIFILILLENVLPIVPSEIILTFAGLMSVKSHLSILTLFIIATIA
Newman MEQIITEFISRFGYAAIFILILLENVLPIVPSEIILTFAGLMSVKSHLSILTLFIIATIA
USA300_FPR3757 MEQIITEFISRFGYAAIFILILLENVLPIVPSEIILTFAGLMSVKSHLSILTLFIIATIA
************************************************************
COL SFIGLLILYYICRLISEERLYRFIDRHGKWIKLKSKDLKRANDWFKKYGVWAVFICRFIP
N315 SFIGLLILYYICRLISEERLYRFIDRHGKWIKLKSKDLRRANDWFKKYGVWAVFICRFIP
NCTC8325 SFIGLLILYYICRLISEERLYRFIDRHGKWIKLKSKDLKRANDWFKKYGVWAVFICRFIP
Newman SFIGLLILYYICRLISEERLYRFIDRHGKWIKLKSKDLKRANDWFKKYGVWAVFICRFIP
USA300_FPR3757 SFIGLLILYYICRLISEERLYRFIDRHGKWIKLKSKDLKRANDWFKKYGVWAVFICRFIP
**************************************:*********************
COL VLRVLITIPAGVNRMNVVTFTVISLIGTTIWNFGLILLGRTLSDSFGMLMTGLHTYSRIM
N315 VLRVLITIPAGVNRMNVVTFTVISLIGTTIWNFGLILLGRTLSDSFGMLMTGLHTYSRIM
NCTC8325 VLRVLITIPAGVNRMNVVTFTVISLIGTTIWNFGLILLGRTLSDSFGMLMTGLHTYSRIM
Newman VLRVLITIPAGVNRMNVVTFTVISLIGTTIWNFGLILLGRTLSDSFGMLMTGLHTYSRIM
USA300_FPR3757 VLRVLITIPAGVNRMNVVTFTVISLIGTTIWNFGLILLGRTLSDSFGMLMTGLHTYSRIM
************************************************************
COL YVVIIIAVIYFAIRYIGKRKRVK
N315 YVVIIIAVIYFAIRYIGKRKRVK
NCTC8325 YVVIIIAVIYFAIRYIGKRKRVK
Newman YVVIIIAVIYFAIRYIGKRKRVK
USA300_FPR3757 YVVIIIAVIYFAIRYIGKRKRVK
***********************
- ↑ Brandon Sit, Veerasak Srisuknimit, Emilio Bueno, Franz G Zingl, Karthik Hullahalli, Felipe Cava, Matthew K Waldor
Undecaprenyl phosphate translocases confer conditional microbial fitness.
Nature: 2023, 613(7945);721-728
[PubMed:36450355] [WorldCat.org] [DOI] (I p)Ian J Roney, David Z Rudner
Two broadly conserved families of polyprenyl-phosphate transporters.
Nature: 2023, 613(7945);729-734
[PubMed:36450357] [WorldCat.org] [DOI] (I p)Anne Galinier, Clémentine Delan-Forino, Elodie Foulquier, Hakima Lakhal, Frédérique Pompeo
Recent Advances in Peptidoglycan Synthesis and Regulation in Bacteria.
Biomolecules: 2023, 13(5);
[PubMed:37238589] [WorldCat.org] [DOI] (I e)