Christopher M. Hickey

Affiliations: 
Yale University, New Haven, CT 
Area:
Cell Biology, Biochemistry
Website:
http://medicine.yale.edu/lab/hochstrasser/people/christopher_hickey.profile
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"Christopher Hickey"
Bio:

http://gradworks.umi.com/34/03/3403101.html

Cross-listing: Chemistry Tree

Parents

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William Wickner grad student 2010 Dartmouth
 (Mechanisms of Rab- and Rab effector-dependent membrane tethering, docking, and fusion.)
Mark W. Hochstrasser post-doc 2010- Yale

Children

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Eric J Wright research scientist 2022- (Chemistry Tree)
Huda Zahid research scientist 2022- (Chemistry Tree)
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Publications

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Breckel CA, Johnson ZM, Hickey CM, et al. (2024) Yeast 26S proteasome nuclear import is coupled to nucleus-specific degradation of the karyopherin adaptor protein Sts1. Scientific Reports. 14: 2048
Hickey CM, Breckel C, Zhang M, et al. (2021) Protein quality control degron-containing substrates are differentially targeted in the cytoplasm and nucleus by ubiquitin ligases. Genetics. 217: 1-19
Budenholzer L, Breckel C, Hickey CM, et al. (2020) The Sts1 nuclear import adaptor uses a noncanonical bipartite NLS and is directly degraded by the proteasome. Journal of Cell Science
Hickey CM, Xie Y, Hochstrasser M. (2018) DNA Binding by the MATα2 Transcription Factor Controls its Access to Alternative Ubiquitin-modification Pathways. Molecular Biology of the Cell
Hickey CM. (2016) Degradation elements coincide with cofactor binding sites in a short-lived transcription factor. Cellular Logistics. 6: e1157664
Gillies J, Hickey CM, Su D, et al. (2016) SUMO Pathway Modulation of Regulatory Protein Binding at the Ribosomal DNA Locus in Saccharomyces cerevisiae. Genetics
Hickey CM, Hochstrasser M. (2015) STUbL-mediated degradation of the transcription factor MATα2 requires degradation elements that coincide with corepressor binding sites. Molecular Biology of the Cell. 26: 3401-12
Hickey CM, Wilson NR, Hochstrasser M. (2012) Function and regulation of SUMO proteases. Nature Reviews. Molecular Cell Biology. 13: 755-66
Hickey CM, Wickner W. (2010) HOPS initiates vacuole docking by tethering membranes before trans-SNARE complex assembly. Molecular Biology of the Cell. 21: 2297-305
Stroupe C, Hickey CM, Mima J, et al. (2009) Minimal membrane docking requirements revealed by reconstitution of Rab GTPase-dependent membrane fusion from purified components. Proceedings of the National Academy of Sciences of the United States of America. 106: 17626-33
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