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EC Number
BRENDA No.
Title
Journal
Volume
Pages
Year
Organism
PubMed ID
3.4.24.B17
753563
A single amino acid of a Salmonella virulence protein contributes to pathogenicity by protecting from the FtsH-mediated proteolysis
FEBS Lett.
589
1346-1351
2015
Salmonella enterica
25900124
3.4.24.B17
753563
A single amino acid of a Salmonella virulence protein contributes to pathogenicity by protecting from the FtsH-mediated proteolysis
FEBS Lett.
589
1346-1351
2015
Salmonella enterica 14028s
25900124
3.4.24.B17
755341
Proteolysis mediated by the membrane-integrated ATP-dependent protease FtsH has a unique nonlinear dependence on ATP hydrolysis rates
Protein Sci.
28
1262-1275
2019
Escherichia coli
31008538
3.4.24.B17
752769
The AAA+ FtsH protease degrades an ssrA-tagged model protein in the inner membrane of Escherichia coli
Biochemistry
55
5649-5652
2016
Escherichia coli
27677373
3.4.24.B17
678942
A proteomic study of Corynebacterium glutamicum AAA+ protease FtsH
BMC Microbiol.
7
6
2007
Corynebacterium glutamicum
17254330
3.4.24.B17
649814
AAA proteases of mitochondria: quality control of membrane proteins and regulatory functions during mitochondrial biogenesis
Biochem. Soc. Trans.
29
431-436
2001
Escherichia coli
11498003
3.4.24.B17
668731
An AAA protease FtsH can initiate proteolysis from internal sites of a model substrate, apo-flavodoxin
Genes Cells
11
261-268
2006
Escherichia coli
16483314
3.4.24.B17
651279
An internal region of the RpoH heat shock transcription factor is critical for rapid degradation by the FtsH protease
FEBS Lett.
493
17-20
2001
Escherichia coli
11277997
3.4.24.B17
681782
Analysis of degradation of bacterial cell division protein FtsZ by the ATP-dependent zinc-metalloprotease FtsH in vitro
Microbiol. Res.
163
21-30
2008
Escherichia coli
16638632
3.4.24.B17
681782
Analysis of degradation of bacterial cell division protein FtsZ by the ATP-dependent zinc-metalloprotease FtsH in vitro
Microbiol. Res.
163
21-30
2008
Escherichia coli TYE024
16638632
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