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There are several matches for 'protein RpoS'.
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319 matches
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organism
protein
1)
Escherichia coli K12
iraD -
RpoS
stabilzer after DNA damage, anti-RssB factor; Inhibits
RpoS
proteolysis by regulating RssB activity, thereby increasing the stability of the sigma stress factor
RpoS
during oxidative stress. Its effect on
RpoS
stability is due to its interaction with RssB, which probably blocks the interaction of RssB with
RpoS
, and the consequent delivery of the RssB-
RpoS
complex to the ClpXP
protein
degradation pathway; Belongs to the GpW/Gp25 family. IraD subfamily.
[a.k.a. b4326, AAC77282.2, P39375]
2)
Escherichia coli K12
iraP - anti-RssB factor,
RpoS
stabilzer during Pi starvation; Inhibits
RpoS
proteolysis by regulating RssB activity, thereby increasing the stability of the sigma stress factor
RpoS
especially during phosphate starvation, but also in stationary phase and during nitrogen starvation. Its effect on
RpoS
stability is due to its interaction with RssB, which probably blocks the interaction of RssB with
RpoS
, and the consequent delivery of the RssB-
RpoS
complex to the ClpXP
protein
degradation pathway; Belongs to the IraP family.
[a.k.a. b0382, AAC73485.1, EG11256]
3)
Escherichia coli K12
iraM - Anti-adapter
protein
IraM; Inhibits
RpoS
proteolysis by regulating RssB activity, thereby increasing the stability of the sigma stress factor
RpoS
during magnesium starvation. May also be involved in the early steps of isoprenoid biosynthesis, possibly through its role as RssB regulator.
[a.k.a. b1160, elbA, JW5173]
4)
Escherichia coli K12
appY - HTH-type transcriptional regulator AppY; Induces the synthesis of acid phosphatase (AppA) and several other polypeptides (such as AppBC) during the deceleration phase of growth. It also acts as a transcriptional repressor for one group of
proteins
that are synthesized preferentially in exponential growth and for one group synthesized only in the stationary phase. Also involved in the stabilization of the sigma stress factor
RpoS
during stress conditions.
[a.k.a. b0564, ABE-0001919, EG14317]
5)
Escherichia coli K12
rsd - Stationary phase
protein
, binds sigma 70 RNA polymerase subunit; Binds RpoD and negatively regulates RpoD-mediated transcription activation by preventing the interaction between the primary sigma factor RpoD with the catalytic core of the RNA polymerase and with promoter DNA. May be involved in replacement of the RNA polymerase sigma subunit from RpoD to
RpoS
during the transition from exponential growth to the stationary phase. Belongs to the Rsd/AlgQ family.
[a.k.a. b3995, AAC76969.1, Regulator of sigma D]
6)
Niastella koreensis
AEV98637.1 - Transport-associated
protein
; PFAM: Putative phospholipid-binding domain; COGs: COG2823 periplasmic or secreted lipoprotein; InterPro IPR007055:IPR014004; KEGG: pzu:PHZ_p0074 hyperosmotically inducible periplasmic
protein
,
RpoS
-dependent stationary phase gene; PFAM: Transport-associated; SPTR: Hyperosmotically inducible periplasmic
protein
,
RpoS
-dependent stationary phase gene.
[a.k.a. Niako_2290, Transport-associated protein, WP_014218551.1]
7)
Escherichia coli IAI1
yjiD - DNA replication/recombination/repair
protein
; Inhibits
RpoS
proteolysis by regulating RssB activity, thereby increasing the stability of the sigma stress factor
RpoS
during oxidative stress. Its effect on
RpoS
stability is due to its interaction with RssB, which probably blocks the interaction of RssB with
RpoS
, and the consequent delivery of the RssB-
RpoS
complex to the ClpXP
protein
degradation pathway.
[a.k.a. ECIAI1_4543, CAR01284.1, A0A2X2ZH97]
8)
Escherichia coli IAI39
yjiD - DNA replication/recombination/repair
protein
; Inhibits
RpoS
proteolysis by regulating RssB activity, thereby increasing the stability of the sigma stress factor
RpoS
during oxidative stress. Its effect on
RpoS
stability is due to its interaction with RssB, which probably blocks the interaction of RssB with
RpoS
, and the consequent delivery of the RssB-
RpoS
complex to the ClpXP
protein
degradation pathway.
[a.k.a. CAR20897.1, ECIAI39_4800, B7NV97]
9)
Escherichia coli O157H7 EDL933
yjiD - Hypothetical
protein
; Inhibits
RpoS
proteolysis by regulating RssB activity, thereby increasing the stability of the sigma stress factor
RpoS
during oxidative stress. Its effect on
RpoS
stability is due to its interaction with RssB, which probably blocks the interaction of RssB with
RpoS
, and the consequent delivery of the RssB-
RpoS
complex to the ClpXP
protein
degradation pathway.
[a.k.a. AAG59509.1, Z5925, AAG59509]
10)
Escherichia coli UMN026
yjiD - DNA replication/recombination/repair
protein
; Inhibits
RpoS
proteolysis by regulating RssB activity, thereby increasing the stability of the sigma stress factor
RpoS
during oxidative stress. Its effect on
RpoS
stability is due to its interaction with RssB, which probably blocks the interaction of RssB with
RpoS
, and the consequent delivery of the RssB-
RpoS
complex to the ClpXP
protein
degradation pathway.
[a.k.a. ECUMN_4935, CAR16046.1, 7155541]
11)
Salmonella enterica Typhimurium
iraD - Putative cytoplasmic
protein
; Inhibits
RpoS
proteolysis by regulating RssB activity, thereby increasing the stability of the sigma stress factor
RpoS
during oxidative stress. Its effect on
RpoS
stability is due to its interaction with RssB, which probably blocks the interaction of RssB with
RpoS
, and the consequent delivery of the RssB-
RpoS
complex to the ClpXP
protein
degradation pathway.
[a.k.a. AAL22004.1, STM3130, IRAD_SALTY]
12)
Salmonella enterica arizonae
iraD - Hypothetical
protein
; Inhibits
RpoS
proteolysis by regulating RssB activity, thereby increasing the stability of the sigma stress factor
RpoS
during oxidative stress. Its effect on
RpoS
stability is due to its interaction with RssB, which probably blocks the interaction of RssB with
RpoS
, and the consequent delivery of the RssB-
RpoS
complex to the ClpXP
protein
degradation pathway.
[a.k.a. ABX24275.1, SARI_04501, ABX24275]
13)
Salmonella enterica diarizonae
iraD - DNA recombination
protein
; Inhibits
RpoS
proteolysis by regulating RssB activity, thereby increasing the stability of the sigma stress factor
RpoS
during oxidative stress. Its effect on
RpoS
stability is due to its interaction with RssB, which probably blocks the interaction of RssB with
RpoS
, and the consequent delivery of the RssB-
RpoS
complex to the ClpXP
protein
degradation pathway.
[a.k.a. UQ49_19700, ANA31769.1, A0A2I5HQA3_SALDZ]
14)
Salmonella enterica indica
iraD - DNA replication/recombination/repair
protein
; Inhibits
RpoS
proteolysis by regulating RssB activity, thereby increasing the stability of the sigma stress factor
RpoS
during oxidative stress. Its effect on
RpoS
stability is due to its interaction with RssB, which probably blocks the interaction of RssB with
RpoS
, and the consequent delivery of the RssB-
RpoS
complex to the ClpXP
protein
degradation pathway.
[a.k.a. ESE81807.1, SEI61121_19549, ESE81807]
15)
Salmonella enterica salamae
iraD - DNA recombination
protein
; Inhibits
RpoS
proteolysis by regulating RssB activity, thereby increasing the stability of the sigma stress factor
RpoS
during oxidative stress. Its effect on
RpoS
stability is due to its interaction with RssB, which probably blocks the interaction of RssB with
RpoS
, and the consequent delivery of the RssB-
RpoS
complex to the ClpXP
protein
degradation pathway.
[a.k.a. LFZ48_14215, KSB60749.1, NZ_UGYF01000001.1]
16)
Shigella boydii
iraD - Conserved hypothetical
protein
; Inhibits
RpoS
proteolysis by regulating RssB activity, thereby increasing the stability of the sigma stress factor
RpoS
during oxidative stress. Its effect on
RpoS
stability is due to its interaction with RssB, which probably blocks the interaction of RssB with
RpoS
, and the consequent delivery of the RssB-
RpoS
complex to the ClpXP
protein
degradation pathway.
[a.k.a. SbBS512_E4778, ACD09776.1, sbc:SbBS512_E4778]
17)
Shigella flexneri
yjiD - Conserved hypothetical
protein
; Inhibits
RpoS
proteolysis by regulating RssB activity, thereby increasing the stability of the sigma stress factor
RpoS
during oxidative stress. Its effect on
RpoS
stability is due to its interaction with RssB, which probably blocks the interaction of RssB with
RpoS
, and the consequent delivery of the RssB-
RpoS
complex to the ClpXP
protein
degradation pathway.
[a.k.a. SF4192, AAN45613.2, IRAD_SHIFL]
18)
Citrobacter koseri
iraP - Hypothetical
protein
; Inhibits
RpoS
proteolysis by regulating RssB activity, thereby increasing the stability of the sigma stress factor
RpoS
especially during phosphate starvation, but also in stationary phase and during nitrogen starvation. Its effect on
RpoS
stability is due to its interaction with RssB, which probably blocks the interaction of RssB with
RpoS
, and the consequent delivery of the RssB-
RpoS
complex to the ClpXP
protein
degradation pathway.
[a.k.a. CKO_02790, ABV13896.1, ABV13896]
19)
Citrobacter rodentium
iraP - Conserved hypothetical
protein
; Inhibits
RpoS
proteolysis by regulating RssB activity, thereby increasing the stability of the sigma stress factor
RpoS
especially during phosphate starvation, but also in stationary phase and during nitrogen starvation. Its effect on
RpoS
stability is due to its interaction with RssB, which probably blocks the interaction of RssB with
RpoS
, and the consequent delivery of the RssB-
RpoS
complex to the ClpXP
protein
degradation pathway.
[a.k.a. ROD_04261, CBG87207.1, CBG87207]
20)
Cronobacter sakazakii
iraP - Hypothetical
protein
; Inhibits
RpoS
proteolysis by regulating RssB activity, thereby increasing the stability of the sigma stress factor
RpoS
especially during phosphate starvation, but also in stationary phase and during nitrogen starvation. Its effect on
RpoS
stability is due to its interaction with RssB, which probably blocks the interaction of RssB with
RpoS
, and the consequent delivery of the RssB-
RpoS
complex to the ClpXP
protein
degradation pathway.
[a.k.a. CSK29544_04196, AKE97137.1, 29459525]
319 matches
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