Brent L. Iverson
Affiliations: | University of Texas at Austin, Austin, Texas, U.S.A. |
Area:
Antibody and Enzyme EngineeringWebsite:
http://www.cm.utexas.edu/brent_iversonGoogle:
"Brent Iverson"Bio:
http://www.utexas.edu/ugs/sites/default/files/ugs/docs/Iverson,%20Brent_CV%202013.pdf
Mean distance: 7.4 | S | N | B | C | P |
Parents
Sign in to add mentorPeter B. Dervan | grad student | 1987 | Caltech | |
(Nonenzymatic cleavage of single-stranded DNA to nucleotide resolution. Novel base specific DNA cleavage reactions.) | ||||
Richard A. Lerner | post-doc | 1987-1990 | Scripps Institute |
Children
Sign in to add traineeLinda E Marenus | research assistant | 1996 | UT Austin |
Eric D Helms | grad student | 1997 | |
R. Scott Lokey | grad student | 1997 | UT Austin |
Mark S. Cubberley | grad student | 2000 | UT Austin |
Maha Z. Foote | grad student | 2000 | UT Austin |
Vladimir M. Guelev | grad student | 2001 | UT Austin |
Andrew J. Zych | grad student | 2001 | UT Austin |
Barrett R. Harvey | grad student | 2003 | UT Austin |
Jeeyeon Lee | grad student | 2003 | UT Austin |
Mark J. Olsen | grad student | 2003 | UT Austin |
Gregory J. Gabriel | grad student | 2004 | UT Austin |
Jongsik Gam | grad student | 2004 | UT Austin |
Karl E. Griswold | grad student | 2005 | UT Austin |
George R. Mabry | grad student | 2005 | UT Austin |
Rozamond Y. Sweeney | grad student | 2005 | UT Austin |
Joseph J. Reczek | grad student | 2006 | UT Austin |
Yongjun Chu | grad student | 2007 | UT Austin |
Navin Varadarajan | grad student | 2007 | UT Austin |
Valerie J. Bradford | grad student | 2008 | UT Austin |
Clinton E. Leysath | grad student | 2008 | UT Austin |
Cameron Peebles | grad student | 2010-2015 | UT Austin |
Carl Andre Denard | post-doc | 2015-2019 | University of Texas |
BETA: Related publications
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Publications
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Denard CA, Paresi C, Yaghi R, et al. (2021) YESS 2.0, a Tunable Platform for Enzyme Evolution, Yields Highly Active TEV Protease Variants. Acs Synthetic Biology |
Mei M, Li J, Wang S, et al. (2019) Prompting Fab Yeast Surface Display Efficiency by ER Retention and Molecular Chaperon Co-expression. Frontiers in Bioengineering and Biotechnology. 7: 362 |
Li Q, Yi L, Hoi KH, et al. (2016) Profiling Protease Specificity: Combining Yeast ER Sequestration Screening (YESS) with Next Generation Sequencing. Acs Chemical Biology |
Yi L, Taft JM, Li Q, et al. (2015) Yeast Endoplasmic Reticulum Sequestration Screening for the Engineering of Proteases from Libraries Expressed in Yeast. Methods in Molecular Biology (Clifton, N.J.). 1319: 81-93 |
Peebles C, Wight CD, Iverson BL. (2015) Solution- and solid-state photophysical and stimuli-responsive behavior in conjugated monoalkoxynaphthalene-naphthalimide donor-acceptor dyads Journal of Materials Chemistry C. 3: 12156-12163 |
Peebles C, Alvey PM, Lynch V, et al. (2014) Time-Dependent Solid State Polymorphism of a Series of Donor-Acceptor Dyads. Crystal Growth & Design. 14: 290-299 |
Ikkanda BA, Samuel SA, Iverson BL. (2014) NDI and DAN DNA: nucleic acid-directed assembly of NDI and DAN. The Journal of Organic Chemistry. 79: 2029-37 |
Rhoden Smith A, Iverson BL. (2013) Threading polyintercalators with extremely slow dissociation rates and extended DNA binding sites. Journal of the American Chemical Society. 135: 12783-9 |
Peebles C, Piland R, Iverson BL. (2013) More than meets the eye: conformational switching of a stacked dialkoxynaphthalene-naphthalenetetracarboxylic diimide (DAN-NDI) foldamer to an NDI-NDI fibril aggregate. Chemistry (Weinheim An Der Bergstrasse, Germany). 19: 11598-602 |
Yi L, Gebhard MC, Li Q, et al. (2013) Engineering of TEV protease variants by yeast ER sequestration screening (YESS) of combinatorial libraries. Proceedings of the National Academy of Sciences of the United States of America. 110: 7229-34 |