Robert B. Rose
Affiliations: | Molecular and Structural Biochemistry | North Carolina State University, Raleigh, NC |
Area:
Transcriptional regulation of cell specificity, Etiology of diseases associated with mis-regulation of transcription, particularly diabetes, Protein X-ray crystallography and small angle scattering, Evolution of protein structureWebsite:
http://biochem.ncsu.edu/faculty/rose/rose.htmlGoogle:
"Robert Rose"Mean distance: 8.7 | S | N | B | C | P |
Parents
Sign in to add mentorRobert M. Stroud | grad student | 1989-1996 | UCSF | |
(Structure of HIV-1 and SIV proteases wih implications for the catalytic mechanism and drug resistance) | ||||
Thomas C. Alber | post-doc | 1996-2001 | UC Berkeley |
Children
Sign in to add traineeCheng Wan | grad student | 2008 | NCSU |
Helen Y. Rho | grad student | 2010 | NCSU |
Dongli Wang | grad student | 2012 | NCSU |
Xun Lu | grad student | 2013 | NCSU |
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Publications
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Enríquez P, Krajewski K, Strahl BD, et al. (2021) Binding specificity and function of the SWI/SNF subunit SMARCA4 bromodomain interaction with acetylated histone H3K14. The Journal of Biological Chemistry. 101145 |
Khund-Sayeed S, He X, Holzberg T, et al. (2016) 5-Hydroxymethylcytosine in E-box motifs ACAT|GTG and ACAC|GTG increases DNA-binding of the B-HLH transcription factor TCF4. Integrative Biology : Quantitative Biosciences From Nano to Macro |
Wang D, Coco MW, Rose RB. (2015) Interactions with the bifunctional interface of the transcriptional coactivator DCoH1 are kinetically regulated. The Journal of Biological Chemistry. 290: 4319-29 |
Golla JP, Zhao J, Mann IK, et al. (2014) Carboxylation of cytosine (5caC) in the CG dinucleotide in the E-box motif (CGCAG|GTG) increases binding of the Tcf3|Ascl1 helix-loop-helix heterodimer 10-fold. Biochemical and Biophysical Research Communications. 449: 248-55 |
Babin V, Wang D, Rose RB, et al. (2013) Binding polymorphism in the DNA bound state of the Pdx1 homeodomain. Plos Computational Biology. 9: e1003160 |
Lu X, Guanga GP, Wan C, et al. (2012) A novel DNA binding mechanism for maf basic region-leucine zipper factors inferred from a MafA-DNA complex structure and binding specificities. Biochemistry. 51: 9706-17 |
Rho H, Jones CN, Rose RB. (2010) Kinetic stability may determine the interaction dynamics of the bifunctional protein DCoH1, the dimerization cofactor of the transcription factor HNF-1α . Biochemistry. 49: 10187-97 |
Longo A, Guanga GP, Rose RB. (2007) Structural basis for induced fit mechanisms in DNA recognition by the Pdx1 homeodomain. Biochemistry. 46: 2948-57 |
Wan C, Tempel W, Liu ZJ, et al. (2005) Structure of the conserved transcriptional repressor enhancer of rudimentary homolog. Biochemistry. 44: 5017-23 |
Rose RB, Pullen KE, Bayle JH, et al. (2004) Biochemical and structural basis for partially redundant enzymatic and transcriptional functions of DCoH and DCoH2. Biochemistry. 43: 7345-55 |