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LRRFIP1 gene
Known as:
TRIP
, GCF2
, leucine rich repeat (in FLII) interacting protein 1
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National Institutes of Health
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Papers overview
Semantic Scholar uses AI to extract papers important to this topic.
Highly Cited
2014
Highly Cited
2014
Assembly dynamics and the roles of FliI ATPase of the bacterial flagellar export apparatus
F. Bai
,
Yusuke V. Morimoto
,
+4 authors
T. Minamino
Scientific Reports
2014
Corpus ID: 17997182
For construction of the bacterial flagellum, FliI ATPase forms the FliH2-FliI complex in the cytoplasm and localizes to the…
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Highly Cited
2013
Highly Cited
2013
The microRNA miR-132 targets Lrrfip1 to block vascular smooth muscle cell proliferation and neointimal hyperplasia.
N. Choe
,
J. Kwon
,
+6 authors
H. Kook
Atherosclerosis
2013
Corpus ID: 6277429
Highly Cited
2012
Highly Cited
2012
Interaction of the Extreme N-Terminal Region of FliH with FlhA Is Required for Efficient Bacterial Flagellar Protein Export
Noritaka Hara
,
Yusuke V. Morimoto
,
A. Kawamoto
,
K. Namba
,
T. Minamino
Journal of Bacteriology
2012
Corpus ID: 31278903
ABSTRACT The flagellar type III protein export apparatus plays an essential role in the formation of the bacterial flagellum…
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Highly Cited
2010
Highly Cited
2010
The cytosolic nucleic acid sensor LRRFIP1 mediates the production of type I interferon via a β-catenin-dependent pathway
Pengyuan Yang
,
H. An
,
+4 authors
Xuetao Cao
Nature Immunology
2010
Corpus ID: 19569048
Intracellular nucleic acid sensors detect microbial RNA and DNA and trigger the production of type I interferon. However, the…
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Highly Cited
2010
Highly Cited
2010
Transcription profiling in human platelets reveals LRRFIP1 as a novel protein regulating platelet function.
A. Goodall
,
P. Burns
,
+22 authors
W. Ouwehand
Blood
2010
Corpus ID: 5935395
Within the healthy population, there is substantial, heritable, and interindividual variability in the platelet response. We…
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Highly Cited
2010
Highly Cited
2010
Role of the C-Terminal Cytoplasmic Domain of FlhA in Bacterial Flagellar Type III Protein Export
T. Minamino
,
M. Shimada
,
+4 authors
K. Namba
Journal of Bacteriology
2010
Corpus ID: 20493900
ABSTRACT For construction of the bacterial flagellum, many of the flagellar proteins are exported into the central channel of the…
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Highly Cited
2009
Highly Cited
2009
MicroRNA-21 targets LRRFIP1 and contributes to VM-26 resistance in glioblastoma multiforme
Yiming Li
,
Wei-qing Li
,
+7 authors
Hongyu Yu
Brain Research
2009
Corpus ID: 10566787
Highly Cited
2009
Highly Cited
2009
Roles of the extreme N‐terminal region of FliH for efficient localization of the FliH–FliI complex to the bacterial flagellar type III export apparatus
T. Minamino
,
Shinsuke D. J. Yoshimura
,
Yusuke V. Morimoto
,
B. González-Pedrajo
,
N. Kami‐ike
,
K. Namba
Molecular Microbiology
2009
Corpus ID: 31589537
Most bacterial flagellar proteins are exported by the flagellar type III protein export apparatus for their self‐assembly. FliI…
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Highly Cited
2009
Highly Cited
2009
Modulation of TLR Signaling by Multiple MyD88-Interacting Partners Including Leucine-Rich Repeat Fli-I-Interacting Proteins1
Penggao Dai
,
S. Y. Jeong
,
+4 authors
Xian Chen
Journal of Immunology
2009
Corpus ID: 17311147
Emerging evidences suggest TLR-mediated signaling is tightly regulated by a specific chain of intracellular protein-protein…
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Highly Cited
2008
Highly Cited
2008
Distinct roles of the FliI ATPase and proton motive force in bacterial flagellar protein export
T. Minamino
,
K. Namba
Nature
2008
Corpus ID: 4423557
Translocation of many soluble proteins across cell membranes occurs in an ATPase-driven manner. For construction of the bacterial…
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