Gregory J. Gemmen, Ph.D.

Affiliations: 
2006 University of California, San Diego, La Jolla, CA 
Area:
General Biophysics
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"Gregory Gemmen"
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Douglas E Smith grad student 2006 UCSD
 (DNA tethering characterization, enzyme-mediated DNA looping under tension, and nucleosome stability in the force measuring optical tweezers.)
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Publications

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Arslan S, Garcia FJ, Guo M, et al. (2023) Sequencing by avidity enables high accuracy with low reagent consumption. Nature Biotechnology
Farver O, Wherland S, Antholine WE, et al. (2010) Pulse Radiolysis Studies of Temperature Dependent Electron Transfers among Redox Centers in ba(3)-Cytochrome c Oxidase from Thermus thermophilus: Comparison of A- and B-Type Enzymes. Biochemistry
Gemmen GJ, Reisner WW, Tegenfeldt J, et al. (2010) Ethanol Induced Shortening of dsDNA in Nanochannels Biophysical Journal. 98: 468a-469a
Krishnan R, Dehlinger DA, Gemmen GJ, et al. (2009) Interaction of Nanoparticles at the DEP Microelectrode Interface under High Conductance Conditions. Electrochemistry Communications. 11: 1661-1666
Bromley EH, Kuwada NJ, Zuckermann MJ, et al. (2009) The Tumbleweed: towards a synthetic proteinmotor. Hfsp Journal. 3: 204-12
Gemmen GJ, Millin R, Smith DE. (2006) Dynamics of single DNA looping and cleavage by Sau3AI and effect of tension applied to the DNA. Biophysical Journal. 91: 4154-65
Gemmen GJ, Millin R, Smith DE. (2006) Tension-dependent DNA cleavage by restriction endonucleases: two-site enzymes are "switched off" at low force. Proceedings of the National Academy of Sciences of the United States of America. 103: 11555-60
Gemmen GJ, Millin R, Smith DE. (2006) DNA looping by two-site restriction endonucleases: heterogeneous probability distributions for loop size and unbinding force. Nucleic Acids Research. 34: 2864-77
Fuller DN, Gemmen GJ, Rickgauer JP, et al. (2006) A general method for manipulating DNA sequences from any organism with optical tweezers. Nucleic Acids Research. 34: e15
Smith DE, Gemmen GJ, Millin R. (2006) DNA looping and cleavage by restriction enzymes studied by manipulation of single DNA molecules with optical tweezers Proceedings of Spie. 6326: 632625
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