Aaron C. Ehlinger, Ph.D.
Affiliations: | 2013 | Biochemistry, Molecular Bio, and Biophysics | University of Minnesota, Twin Cities, Minneapolis, MN |
Area:
General Biophysics, Biochemistry, Molecular BiologyGoogle:
"Aaron Ehlinger"Mean distance: (not calculated yet)
Parents
Sign in to add mentorKylie J. Walters | grad student | 2013 | UMN | |
(Proteasome activation by the 19s regulatory particle: Structural dynamics of 26s assembly and substrate recognition.) |
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Publications
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Lee S, Tumolo JM, Ehlinger AC, et al. (2017) Ubiquitin turnover and endocytic trafficking in yeast are regulated by Ser57 phosphorylation of ubiquitin. Elife. 6 |
Thompson MK, Ehlinger AC, Chazin WJ. (2017) Analysis of Functional Dynamics of Modular Multidomain Proteins by SAXS and NMR. Methods in Enzymology. 592: 49-76 |
Guilliam TA, Brissett NC, Ehlinger A, et al. (2017) Molecular basis for PrimPol recruitment to replication forks by RPA. Nature Communications. 8: 15222 |
Lee S, Tumolo JM, Ehlinger AC, et al. (2017) Author response: Ubiquitin turnover and endocytic trafficking in yeast are regulated by Ser57 phosphorylation of ubiquitin Elife |
He F, Wollscheid HP, Nowicka U, et al. (2016) Myosin VI Contains a Compact Structural Motif that Binds to Ubiquitin Chains. Cell Reports. 14: 2683-94 |
Holt ME, O'Brien E, Salay L, et al. (2016) Cracking Open a Molecular Calculator: DNA Charge Transport and Primase Biophysical Journal. 110: 21a |
Guilliam TA, Jozwiakowski SK, Ehlinger A, et al. (2015) Human PrimPol is a highly error-prone polymerase regulated by single-stranded DNA binding proteins. Nucleic Acids Research. 43: 1056-68 |
Ehlinger A, Walters KJ. (2013) Structural insights into proteasome activation by the 19S regulatory particle. Biochemistry. 52: 3618-28 |
Ehlinger A, Park S, Fahmy A, et al. (2013) Conformational dynamics of the Rpt6 ATPase in proteasome assembly and Rpn14 binding. Structure (London, England : 1993). 21: 753-65 |
Zhang N, Wang Q, Ehlinger A, et al. (2009) Structure of the s5a:k48-linked diubiquitin complex and its interactions with rpn13. Molecular Cell. 35: 280-90 |