ftsQ:Expression

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Overview

This is a placeholder for a summary statement on how expression of this gene product is regulated. You can help EcoliWiki by becoming a user and writing/editing this statement.


Cellular Levels

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See Help:Cellular levels

Molecule Organism or Strain Value Units Experimental Conditions Assay used Notes Reference(s)

Enzyme activity

E. coli MJC252 and MJC251 (see Table 1)

~22

molecules/cell

  • Medium: M63 minimal glycerol medium
  • Temperature (°C): 34
  • Doubling time (min): Growth Rate(min):
  • Growth phase: other:

enzyme activity

Chromosomal ftsQ-phoA fusions were assayed for alkaline phosphatase activity & compared to activity of MotB-PhoA fusions

PMID:2007547[1]

Protein

E. coli K-12 MG1655

336

molecules/cell/generation

  • Medium: MOPS Complete
  • Temperature (°C): 37
  • Doubling time (min):
  • *Growth phase:
  • OD:
  • other:

Ribosome Profiling

PMID:24766808[2]

Protein

E. coli K-12 MG1655

147

molecules/cell/generation

  • Medium: MOPS Minimal
  • Temperature (°C): 37
  • Doubling time (min):
  • *Growth phase:
  • OD:
  • other:

Ribosome Profiling

PMID:24766808[2]

Protein

E. coli K-12 MG1655

172

molecules/cell/generation

  • Medium: MOPS Complete without Methionine
  • Temperature (°C): 37
  • Doubling time (min):
  • *Growth phase:
  • OD:
  • other:

Ribosome Profiling

PMID:24766808[2]

Notes

Transcription and Transcriptional Regulation

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See Help:Expression_transcription for help entering or editing information in this section of EcoliWiki.

Transcription unit(s)

ftsQ

mraZW-ftsLI-murEF-mraY-murD-ftsW-murGC-ddlB-ftsQAZ

ftsQAZ

Figure courtesy of RegulonDB

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Notes

This is a placeholder for a summary statement about how transcription of this gene is regulated. You can help EcoliWiki by becoming a user and writing/editing this statement.

Translation and Regulation of Translation

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<protect><gbrowseImage> name=NC_000913:103135..103175 source=MG1655 type=Gene+DNA_+Protein preset=Nterminus </gbrowseImage> This picture shows the sequence around the N-terminus.

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Notes

This is a placeholder for a summary statement about how translation of this gene product is regulated. You can help EcoliWiki by becoming a user and writing/editing this statement.

Turnover and Regulation of Turnover

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Notes

This is a placeholder for a summary statement about turnover of this gene product. You can help EcoliWiki by becoming a user and writing/editing this statement.

Experimental

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<protect> Mutations Affecting Expression See Help:Expression_mutations for help entering or editing information in this section of EcoliWiki.

Allele Name Mutation Phenotype Reference


Expression Studies See Help:Expression_studies for help entering or editing information in this section of EcoliWiki.

Type Reference Notes

microarray

GEO Profiles:b0093 (EcoliWiki Page)

NCBI GEO profiles for ftsQ

microarray

GenExpDB:b0093 (EcoliWiki Page)

Summary of data for ftsQ from multiple microarray studies


Expression Resources See Help:Expression_resources for help entering or editing information in this section of EcoliWiki.

Resource Name Resource Type Description Source Notes

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Notes

Accessions Related to ftsQ Expression

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See Help:Gene_accessions for help with entering information into the Gene Accessions table.

Database Accession Notes

EcoCyc

EcoCyc:EG10342

Escherichia coli str. K-12 substr. MG1655

EchoBASE

EchoBASE:EB0338

Escherichia coli str. K-12 substr. MG1655

EcoliGenExpDB (EcoliWiki Page)

EcoliGenExpDB:b0093

EcoGene

EcoGene:EG10342

Escherichia coli str. K-12 substr. MG1655

RegulonDB

RegulonDB:ECK120000336

Escherichia coli str. K-12 substr. MG1655

ASAP

ASAP:ABE-0000329

Escherichia coli str. K-12 substr. MG1655

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Notes

Links

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References

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See Help:References for how to manage references in EcoliWiki.

  1. Carson, MJ et al. (1991) The FtsQ protein of Escherichia coli: membrane topology, abundance, and cell division phenotypes due to overproduction and insertion mutations. J. Bacteriol. 173 2187-95 PubMed
  2. 2.0 2.1 2.2 Li, GW et al. (2014) Quantifying absolute protein synthesis rates reveals principles underlying allocation of cellular resources. Cell 157 624-35 PubMed

Categories

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