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Author Details
Full Name
Wendy Huang
Affiliation
ORCID
Career Start Year
1991
Papers
31
H Index
17
Expertise
CM4AI Collaborator
PMID
Paper Title
Journal Title
Published Year
36724232
RNA binding protein DDX5 restricts RORγt<sup>+</sup> T<sub>reg</sub> suppressor function to promote intestine inflammation.
Sci Adv
2023
37666668
The arginine methyltransferase PRMT5 promotes mucosal defense in the intestine.
2023
36893735
Candida albicans-specific Th17 cell-mediated response contributes to alcohol-associated liver disease.
Cell Host Microbe
2023
37265401
Regulation of CD8 T Cell Differentiation by the RNA-Binding Protein DDX5.
J Immunol
2023
37325561
The long non-coding RNA MALAT1 regulates intestine host-microbe interactions and polyposis.
2023
34853057
RNA binding protein DDX5 directs tuft cell specification and function to regulate microbial repertoire and disease susceptibility in the intestine.
Gut
2022
35593887
The long noncoding RNA Malat1 regulates CD8+ T cell differentiation by mediating epigenetic repression.
J Exp Med
2022
35839772
Protocol to assess cell-intrinsic regulatory mechanisms using an ex vivo murine TÂ cell polarization and co-culture system.
STAR Protocols
2022
35294872
RORγt phosphorylation protects against T cell-mediated inflammation.
Cell Rep
2022
32872214
The DNA Glycosylase NEIL2 Suppresses -Infection-Induced Inflammation and DNA Damage in Colonic Epithelial Cells.
Cells
2020
31847691
Noncoding RNAs in inflammation and colorectal cancer.
RNA Biology
2020
32414833
Early precursors and molecular determinants of tissue-resident memory CD8<sup>+</sup> T lymphocytes revealed by single-cell RNA sequencing.
Sci Immunol
2020
32817263
DDX5 promotes oncogene C3 and FABP1 expressions and drives intestinal inflammation and tumorigenesis.
Life Sci Alliance
2020
30448775
Bacteria engineered to produce IL-22 in intestine induce expression of REG3G to reduce ethanol-induced liver disease in mice.
Gut
2019
29973715
Retraction Note: DDX5 and its associated lncRNA Rmrp modulate T<sub>H</sub>17 cell effector functions.
Nature
2018
26789242
Corrigendum: DDX5 and its associated lncRNA Rmrp modulate TH17 cell effector functions.
Nature
2016
28915371
An IL-23R/IL-22 Circuit Regulates Epithelial Serum Amyloid A to Promote Local Effector Th17 Responses.
Cell
2016
26411290
An IL-23R/IL-22 Circuit Regulates Epithelial Serum Amyloid A to Promote Local Effector Th17 Responses.
Cell
2015
26968628
Regulation of RORγt in Inflammatory Lymphoid Cell Differentiation.
Cold Spring Harbor Symposia on Quantitative Biology
2015
23063365
The transcriptional specificity of NF-κB dimers is coded within the κB DNA response elements.
Cell Rep
2012
23021777
A validated regulatory network for Th17 cell specification.
Cell
2012
21980340
A global clustering algorithm to identify long intergenic non-coding RNA--with applications in mouse macrophages.
PLoS One
2011
21331046
Coronin 2A mediates actin-dependent de-repression of inflammatory response genes.
Nature
2011
21135125
Serum response factor utilizes distinct promoter- and enhancer-based mechanisms to regulate cytoskeletal gene expression in macrophages.
Mol Cell Biol
2011
20489162
Low doses of lipopolysaccharide and minimally oxidized low-density lipoprotein cooperatively activate macrophages via nuclear factor kappa B and activator protein-1: possible mechanism for acceleration of atherosclerosis by subclinical endotoxemia.
Circ Res
2010
20631355
Nuclear receptors and inflammation control: molecular mechanisms and pathophysiological relevance.
Arterioscler Thromb Vasc Biol
2010
19299558
Cooperative NCoR/SMRT interactions establish a corepressor-based strategy for integration of inflammatory and anti-inflammatory signaling pathways.
Genes Dev
2009
19595715
Transcriptional integration of TLR2 and TLR4 signaling at the NCoR derepression checkpoint.
Mol Cell
2009
17218271
Parallel SUMOylation-dependent pathways mediate gene- and signal-specific transrepression by LXRs and PPARgamma.
Mol Cell
2007
14627941
Visual acuity with reversed-contrast charts: II. Clinical investigation.
Optometry and Vision Science
2003
1946355
Growth in high serum concentrations leads to rapid deadaptation of cells previously adapted to growth in an extremely low concentration of serum.
Proceedings of the National Academy of Sciences of the United States of America
1991
1 - 31 of 31
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