Jamie H.D. Cate

Affiliations: 
Molecular and Cell Biology University of California, Berkeley, Berkeley, CA 
Area:
Molecular Basis for Protein Synthesis by the Ribosome
Website:
http://mcb.berkeley.edu/faculty/BMB/catej.html
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"Jamie Cate"
Bio:

http://catelab.berkeley.edu/

Parents

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Jennifer A. Doudna grad student 1997 Yale
 (Crystal structure of a group I ribozyme domain : principles of RNA packing.)
Harry F. Noller post-doc UC Santa Cruz (PombeTree)

Children

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Jeffrey J Liu research assistant 2004-2007 UC Berkeley (Chemistry Tree)
Christina L. Shenvi grad student 2005 UC Berkeley
Veysel Berk grad student 2007 UC Berkeley
Albert A. Liau grad student 2007 UC Berkeley
Raj D. Pai grad student 2008 UC Berkeley
Jack A. Dunkle grad student 2010 UC Berkeley
Jonathan M. Galazka grad student 2011 UC Berkeley
Padma R. Gunda grad student 2011 UC Berkeley
Veronica Zepeda grad student 2011 UC Berkeley
Audrone Lapinaite post-doc 2015- UC Berkeley (Plant Biology Tree)
BETA: Related publications

Publications

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Londregan AT, Wei L, Xiao J, et al. (2018) Small Molecule Proprotein Convertase Subtilisin/Kexin type 9 (PCSK9) Inhibitors: Hit to Lead Optimization of Systemic Agents. Journal of Medicinal Chemistry
Lintner NG, McClure KF, Petersen D, et al. (2018) Correction: Selective stalling of human translation through small-molecule engagement of the ribosome nascent chain. Plos Biology. 16: e1002628
Kim H, Oh EJ, Lane ST, et al. (2018) Enhanced cellobiose fermentation by engineered Saccharomyces cerevisiae expressing a mutant cellodextrin facilitator and cellobiose phosphorylase. Journal of Biotechnology
Lapinaite A, Doudna JA, Cate JHD. (2018) Programmable RNA recognition using a CRISPR-associated Argonaute. Proceedings of the National Academy of Sciences of the United States of America
Lintner NG, McClure KF, Petersen D, et al. (2017) Selective stalling of human translation through small-molecule engagement of the ribosome nascent chain. Plos Biology. 15: e2001882
Li X, Park A, Estrela R, et al. (2016) Comparison of xylose fermentation by two high-performance engineered strains of Saccharomyces cerevisiae. Biotechnology Reports (Amsterdam, Netherlands). 9: 53-56
East-Seletsky A, O'Connell MR, Knight SC, et al. (2016) Two distinct RNase activities of CRISPR-C2c2 enable guide-RNA processing and RNA detection. Nature
Lee AS, Kranzusch PJ, Doudna JA, et al. (2016) eIF3d is an mRNA cap-binding protein that is required for specialized translation initiation. Nature. 536: 96-9
Smith MD, Arake-Tacca L, Nitido A, et al. (2016) Assembly of eIF3 Mediated by Mutually Dependent Subunit Insertion. Structure (London, England : 1993)
Lee AS, Kranzusch PJ, Cate JH. (2015) eIF3 targets cell-proliferation messenger RNAs for translational activation or repression. Nature. 522: 111-4
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