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Jennifer J. Ottesen

Affiliations: 
Chemistry and Biochemistry Ohio State University, Columbus, Columbus, OH 
Area:
peptide and protein chemistry
Website:
http://chemistry.osu.edu/faculty/ottesen
Google:
"Jennifer J. Ottesen"
Bio:

https://research.chemistry.ohio-state.edu/ottesen/about-dr-ottesen/

Mean distance: 8.4
 
SNBCP

Parents

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Barbara Imperiali grad student 2001 MIT
 (Design of discretely folded mini-protein motifs)
Thomas W. Muir post-doc 2005 Rockefeller
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Publications

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Hong ZZ, Yu RR, Zhang X, et al. (2023) Development of Convergent Hybrid Phase Ligation for Efficient and Convenient Total Synthesis of Proteins. Peptide Science (Hoboken, N.J.). 115
Burge NL, Thuma JL, Hong ZZ, et al. (2022) H1.0 C Terminal Domain Is Integral for Altering Transcription Factor Binding within Nucleosomes. Biochemistry. 61: 625-638
Wike CL, Graves HK, Hawkins R, et al. (2016) Aurora-A mediated histone H3 phosphorylation of threonine 118 controls condensin I and cohesin occupancy in mitosis. Elife. 5
Yu RR, Mahto SK, Justus K, et al. (2016) Hybrid phase ligation for efficient synthesis of histone proteins. Organic & Biomolecular Chemistry
Wike CL, Graves HK, Hawkins R, et al. (2016) Author response: Aurora-A mediated histone H3 phosphorylation of threonine 118 controls condensin I and cohesin occupancy in mitosis Elife
Bernier M, Luo Y, Nwokelo KC, et al. (2015) Linker histone H1 and H3K56 acetylation are antagonistic regulators of nucleosome dynamics. Nature Communications. 6: 10152
Chatterjee N, North JA, Dechassa ML, et al. (2015) Histone Acetylation near the Nucleosome Dyad Axis Enhances Nucleosome Disassembly by RSC and SWI/SNF. Molecular and Cellular Biology. 35: 4083-92
Brehove M, Wang T, North J, et al. (2015) Histone Core Phosphorylation Regulates DNA Accessibility. The Journal of Biological Chemistry. 290: 22612-21
Howard CJ, Yu RR, Gardner ML, et al. (2015) Chemical and biological tools for the preparation of modified histone proteins. Topics in Current Chemistry. 363: 193-226
Brehove MS, Wang T, North J, et al. (2015) Histone Phosphorylation Combined with Acetylation Dramatically Increase Nucleosome Accessibility Biophysical Journal. 108: 75a
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