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Nature Structural & Molecular Biology|November 25, 2014
Local slowdown of translation by nonoptimal codons promotes nascent-chain recognition by SRP in vivoSebastian Pechmann, Justin W Chartron, Judith Frydman
Microbial Cell Factories|January 21, 2021
Translational landscape and protein biogenesis demands of the early secretory pathway in Komagataella phaffiiTroy R Alva, Melanie Riera, Justin W Chartron
Nature|August 4, 2016
Cotranslational signal-independent SRP preloading during membrane targetingJustin W Chartron, Katherine C L Hunt, Judith Frydman
The Journal of Biological Chemistry|August 12, 2011
A structural model of the Sgt2 protein and its interactions with chaperones and the Get4/Get5 complexJustin W Chartron, Grecia M Gonzalez, William M Clemons
Nature Chemical Biology|January 25, 2020
Stress-tolerant non-conventional microbes enable next-generation chemical biosynthesisSarah Thorwall, Cory Schwartz, Justin W Chartron, et al.
Current Opinion in Structural Biology|March 27, 2012
The complex process of GETting tail-anchored membrane proteins to the ERJustin W Chartron, William M Clemons, Christian J M Suloway
Biotechnology and Bioengineering|May 29, 2021
Exploring the potential of engineering polygalacturonase-inhibiting protein as an ecological, friendly, and nontoxic pest control agentTiffany Chiu, Anita Behari, Justin W Chartron, et al.
The Journal of Biological Chemistry|January 21, 2012
Get5 carboxyl-terminal domain is a novel dimerization motif that tethers an extended Get4/Get5 complexJustin W Chartron, David G VanderVelde, Meera Rao, et al.
Proceedings of the National Academy of Sciences of the United States of America|June 18, 2010
Structural characterization of the Get4/Get5 complex and its interaction with Get3Justin W Chartron, Christian J M Suloway, Ma'ayan Zaslaver, et al.
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