Aaron L. Lucius, Ph.D.
Affiliations: | Washington University, Saint Louis, St. Louis, MO |
Area:
DNA helises, SSB proteins, DNA repairGoogle:
"Aaron Lucius"Mean distance: 9.77 | S | N | B | C | P |
Parents
Sign in to add mentorTimothy M. Lohman | grad student | 2003 | Washington University | |
(Mechanism of Escherichia coli RecBCD helicase-catalyzed DNA unwinding and general methods for analysis using sequential N-step kinetic models.) |
Children
Sign in to add traineeJiaBei Lin | grad student | University of Alabama Birmingham School of Medicine (Neurotree) |
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Publications
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Foroutannejad S, Good LL, Lin C, et al. (2023) The cofactor-dependent folding mechanism of Drosophila cryptochrome revealed by single-molecule pulling experiments. Nature Communications. 14: 1057 |
Lin J, Shorter J, Lucius AL. (2022) AAA+ proteins: one motor, multiple ways to work. Biochemical Society Transactions |
Scull NW, Lucius AL. (2020) Kinetic Analysis of AAA+ Translocases by Combined Fluorescence and Anisotropy Methods. Biophysical Journal. 119: 1335-1350 |
Lopez KE, Rizo AN, Tse E, et al. (2020) Conformational plasticity of the ClpAP AAA+ protease couples protein unfolding and proteolysis. Nature Structural & Molecular Biology |
Lucius AL. (2020) Molecular Mechanisms of Enzyme Catalyzed Protein Unfolding and Translocation by Class 1 AAA+ Motor Biophysical Journal. 118: 319a |
Scull CE, Clarke AM, Lucius AL, et al. (2019) Downstream sequence-dependent RNA cleavage and pausing by RNA polymerase I. The Journal of Biological Chemistry |
Duran EC, Lucius AL. (2019) Examination of the nucleotide linked assembly mechanism of E. coli ClpA. Protein Science : a Publication of the Protein Society |
Durie CL, Lin J, Scull NW, et al. (2019) Hsp104 and Potentiated Variants Can Operate as Distinct Nonprocessive Translocases. Biophysical Journal |
Scull CE, Ingram ZM, Lucius AL, et al. (2019) A novel assay for RNA polymerase I transcription elongation sheds light on the evolutionary divergence of eukaryotic RNA polymerases. Biochemistry |
Duran EC, Lucius AL. (2018) ATP hydrolysis inactivating Walker B mutation perturbs E. coli ClpA self-assembly energetics in the absence of nucleotide. Biophysical Chemistry. 242: 6-14 |