Keir C. Neuman, Ph.D.
Affiliations: | Princeton University, Princeton, NJ |
Area:
biophysics, single molecules, motor proteins, transcriptionGoogle:
"Keir Neuman"Mean distance: 15.3 (cluster 6) | S | N | B | C | P |
Parents
Sign in to add mentorSteven M. Block | grad student | 2002 | Princeton | |
(Single molecule study of RNA polymerase transcription under load.) |
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Publications
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Devi A, Neupane K, Jung H, et al. (2023) Non-linear effects in optical trapping of titanium dioxide and diamond nanoparticles. Biophysical Journal |
Jian JY, McCarty KD, Byl JAW, et al. (2023) Basis for the discrimination of supercoil handedness during DNA cleavage by human and bacterial type II topoisomerases. Nucleic Acids Research |
Dalvie ED, Stacy JC, Neuman KC, et al. (2022) Recognition of DNA Supercoil Handedness during Catenation Catalyzed by Type II Topoisomerases. Biochemistry. 61: 2148-2158 |
Yang X, Saha S, Yang W, et al. (2022) Structural and biochemical basis for DNA and RNA catalysis by human Topoisomerase 3β. Nature Communications. 13: 4656 |
Harami GM, Pálinkás J, Seol Y, et al. (2022) The toposiomerase IIIalpha-RMI1-RMI2 complex orients human Bloom's syndrome helicase for efficient disruption of D-loops. Nature Communications. 13: 654 |
McKie SJ, Desai P, Seol Y, et al. (2022) Topoisomerase VI is a chirally-selective, preferential DNA decatenase. Elife. 11 |
McKie SJ, Neuman KC, Maxwell A. (2021) DNA topoisomerases: Advances in understanding of cellular roles and multi-protein complexes via structure-function analysis. Bioessays : News and Reviews in Molecular, Cellular and Developmental Biology. e2000286 |
McKie SJ, Maxwell A, Neuman KC. (2020) Mapping DNA Topoisomerase Binding and Cleavage Genome Wide Using Next-Generation Sequencing Techniques. Genes. 11 |
Seol Y, Dinh YT, Neuman KC. (2020) Domain Rigidity Modulates the Catalytic Activity of E. coli Type IA DNA Topoisomerases Biophysical Journal. 118 |
Kovacs ZJ, Hubert Á, Baráth V, et al. (2020) Probing and Visualization of the RecQ Helicase-Induced DNA Binding Mode Change of the Bacterial Single-Stranded DNA Binding (SSB) Protein Biophysical Journal. 118 |