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There are several matches for 'fliI'.
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9700 matches
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protein
1)
Homo sapiens
FLII
- Protein flightless-1 homolog; May play a role as coactivator in transcriptional activation by hormone-activated nuclear receptors (NR) and acts in cooperation with NCOA2 and CARM1. Involved in estrogen hormone signaling. Involved in early embryonic development (By similarity). May play a role in regulation of cytoskeletal rearrangements involved in cytokinesis and cell migration, by inhibiting Rac1-dependent paxillin phosphorylation.
2)
Mus musculus
Flii
- Protein flightless-1 homolog; May play a role as coactivator in transcriptional activation by hormone-activated nuclear receptors (NR) and acts in cooperation with NCOA2 and CARM1. Involved in estrogen hormone signaling (By similarity). Essential for early embryonic development. May play a role in regulation of cytoskeletal rearrangements involved in cytokinesis and cell migration, by inhibiting Rac1-dependent paxillin phosphorylation.
3)
Drosophila melanogaster
fliI
- Protein flightless-1; May play a key role in embryonic cellularization by interacting with both the cytoskeleton and other cellular components. Alternatively, it may play a structural role in indirect flight muscle. Vital for embryonic development; Belongs to the villin/gelsolin family.
4)
Escherichia coli K12
fliI
- Flagellum-specific ATP synthase; Probable catalytic subunit of a protein translocase for flagellum-specific export, or a proton translocase involved in local circuits at the flagellum. May be involved in a specialized protein export pathway that proceeds without signal peptide cleavage; Belongs to the ATPase alpha/beta chains family.
5)
Homo sapiens
LRRFIP2 - Leucine-rich repeat flightless-interacting protein 2; May function as activator of the canonical Wnt signaling pathway, in association with DVL3, upstream of CTNNB1/beta-catenin. Positively regulates Toll-like receptor (TLR) signaling in response to agonist probably by competing with the negative
FLII
regulator for MYD88-binding; Belongs to the LRRFIP family.
[a.k.a. UPI00017A8139, NP_001335237.1, XM_024453821]
6)
Homo sapiens
LRRFIP1 - Leucine-rich repeat flightless-interacting protein 1; Transcriptional repressor which preferentially binds to the GC-rich consensus sequence (5'-AGCCCCCGGCG-3') and may regulate expression of TNF, EGFR and PDGFA. May control smooth muscle cells proliferation following artery injury through PDGFA repression. May also bind double-stranded RNA. Positively regulates Toll-like receptor (TLR) signaling in response to agonist probably by competing with the negative
FLII
regulator for MYD88-binding.
[a.k.a. CCDS2521.1, ENST00000289175, XM_017005261.2]
7)
Acanthochromis polyacanthus
flii
-
FLII
actin remodeling protein.
8)
Accipiter nisus
FLII
-
FLII
actin remodeling protein.
9)
Accumulibacter aalborgensis
fliI
- Flagellum-specific ATP synthase; Function of homologous gene experimentally demonstrated in an other organism; enzyme.
10)
Accumulibacter sp. BA92
fliI
- Flagellum-specific ATP synthase.
11)
Accumulibacter sp. BA93
fliI
- Flagellum-specific ATP synthase.
12)
Accumulibacter sp. BA94
fliI
- Flagellum-specific ATP synthase.
13)
Accumulibacter sp. SK01
fliI
- Flagellum-specific ATP synthase.
14)
Accumulibacter sp. SK02
fliI
- Flagellum-specific ATP synthase.
15)
Accumulibacter sp. SK11
fliI
- Flagellum-specific ATP synthase.
16)
Accumulibacter sp. SK12
fliI
- Flagellum-specific ATP synthase.
17)
Acetivibrio ethanolgignens
fliI
- Flagellar protein export ATPase
FliI
; Involved in type III protein export during flagellum assembly; Derived by automated computational analysis using gene prediction method: Protein Homology.
18)
Acetoanaerobium sticklandii
fliI
- Flagellum-specific ATP synthase; Function of homologous gene experimentally demonstrated in an other organism; enzyme.
19)
Acetobacter aceti
fliI
- Flagellar protein export ATPase
FliI
; Involved in type III protein export during flagellum assembly; Derived by automated computational analysis using gene prediction method: Protein Homology.
20)
Acetobacter ghanensis
fliI
- Flagellum-specific ATP synthase.
9700 matches
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