Colin R. Lickwar, Ph.D.
Affiliations: | Genetics & Molecular Biology | University of North Carolina, Chapel Hill, Chapel Hill, NC |
Area:
Specificity and Function in Protein-Genome InteractionsGoogle:
"Colin Lickwar"Mean distance: 26716.5 (cluster 11)
Parents
Sign in to add mentorJason Lieb | grad student | 2012 | UNC Chapel Hill | |
(The role of Set2, transcription factor residence, and nucleosome spacing in the dynamic access of genomic information.) |
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Publications
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Heppert JK, Lickwar CR, Tillman MC, et al. (2022) Conserved roles for Hnf4 family transcription factors in zebrafish development and intestinal function. Genetics |
Heppert JK, Davison JM, Kelly C, et al. (2020) Transcriptional programmes underlying cellular identity and microbial responsiveness in the intestinal epithelium. Nature Reviews. Gastroenterology & Hepatology |
Casadei E, Tacchi L, Lickwar CR, et al. (2019) Commensal bacteria regulate gene expression and differentiation in vertebrate olfactory systems through transcription factor REST. Chemical Senses |
Lickwar CR, Camp JG, Weiser M, et al. (2017) Genomic dissection of conserved transcriptional regulation in intestinal epithelial cells. Plos Biology. 15: e2002054 |
Davison JM, Lickwar CR, Song L, et al. (2017) Microbiota regulate intestinal epithelial gene expression by suppressing the transcription factor Hepatocyte nuclear factor 4 alpha. Genome Research |
Camp JG, Frank CL, Lickwar CR, et al. (2014) Microbiota modulate transcription in the intestinal epithelium without remodeling the accessible chromatin landscape. Genome Research. 24: 1504-16 |
Lickwar CR, Mueller F, Lieb JD. (2013) Genome-wide measurement of protein-DNA binding dynamics using competition ChIP. Nature Protocols. 8: 1337-53 |
Grohman JK, Gorelick RJ, Lickwar CR, et al. (2013) A guanosine-centric mechanism for RNA chaperone function. Science (New York, N.Y.). 340: 190-5 |
Lickwar CR, Mueller F, Hanlon SE, et al. (2012) Genome-wide protein-DNA binding dynamics suggest a molecular clutch for transcription factor function. Nature. 484: 251-5 |
Lickwar CR, Rao B, Shabalin AA, et al. (2009) The Set2/Rpd3S pathway suppresses cryptic transcription without regard to gene length or transcription frequency. Plos One. 4: e4886 |