Edge Rewrite
// HTMLRewriter · presentation

This page was redesigned at the edge.

Cloudflare fetched the original article and streamed it through HTMLRewriter to apply an entirely new visual system without rebuilding the source page.

Jump to content

Manganese exporter

From Wikipedia, the free encyclopedia
Putative Manganese Efflux Pump
Identifiers
SymbolMntP
PfamPF02659
InterProIPR003810
Available protein structures:
PDB  IPR003810 PF02659 (ECOD; PDBsum)  
AlphaFold

The Manganese (Mn2+) Exporter (MntP) Family (TC# 2.A.107) is a member of the Lysine Exporter (LysE) Superfamily.[1] The MntP family is a small family whose members have been found in bacteria and archaea. MntP proteins are of about 200 amino acyl residues with 6 putative transmembrane segments (TMSs). The Conserved Domain Database (CDD) recognized two DUF204 repeats, each repeat having 3 TMSs. A representative list of proteins belonging to the MntP family can be found in the Transporter Classification Database.

Function

[edit]

At least one member (YebN of E. coli, TC# 2.A.107.1.1) has been shown to function as a putative manganese efflux pump. Manganese sensitivity and intracellular manganese levels significantly increased in bacteria when the mntP (formerly yebN) gene, which encodes the MntP efflux pump, was deleted. While manganese is a highly important trace nutrient for organisms from bacteria to humans, acting as an important element in the defense against oxidative stress and as an enzyme cofactor, it becomes toxic when present in excess.[2]

See also

[edit]

References

[edit]
  1. Tsu BV, Saier MH (2015-01-01). "The LysE Superfamily of Transport Proteins Involved in Cell Physiology and Pathogenesis". PLOS ONE. 10 (10) e0137184. Bibcode:2015PLoSO..1037184T. doi:10.1371/journal.pone.0137184. PMC 4608589. PMID 26474485.
  2. Waters LS, Sandoval M, Storz G (November 2011). "The Escherichia coli MntR miniregulon includes genes encoding a small protein and an efflux pump required for manganese homeostasis". Journal of Bacteriology. 193 (21): 5887–97. doi:10.1128/JB.05872-11. PMC 3194919. PMID 21908668.

Further reading

[edit]
[edit]