Browsing by Author "Bisnett, Brittany J"
Now showing items 1-4 of 4
-
A novel glycoproteomics workflow reveals dynamic O-GlcNAcylation of COPγ1 as a candidate regulator of protein trafficking
Cox, Nathan J; Luo, Peter M; Smith, Timothy J; Bisnett, Brittany J; Soderblom, Erik J; Boyce, Michael (Frontiers in Endocrinology, 2018-10-15)Copyright © 2018 Cox, Luo, Smith, Bisnett, Soderblom and Boyce. O-linked ß-N-acetylglucosamine (O-GlcNAc) is an abundant and essential intracellular form of protein glycosylation in animals and plants. In humans, dysregulation ... -
Dynamic Glycosylation Governs the Vertebrate COPII Protein Trafficking Pathway.
Cox, Nathan J; Unlu, Gokhan; Bisnett, Brittany J; Meister, Thomas R; Condon, Brett M; Luo, Peter M; Smith, Timothy J; ... (13 authors) (Biochemistry, 2018-01)The COPII coat complex, which mediates secretory cargo trafficking from the endoplasmic reticulum, is a key control point for subcellular protein targeting. Because misdirected proteins cannot function, protein sorting by ... -
Esterified Trehalose Analogues Protect Mammalian Cells from Heat Shock.
Bragg, Jack T; D'Ambrosio, Hannah K; Smith, Timothy J; Gorka, Caroline A; Khan, Faraz A; Rose, Joshua T; Rouff, Andrew J; ... (12 authors) (Chembiochem : a European journal of chemical biology, 2017-09)Trehalose is a disaccharide produced by many organisms to better enable them to survive environmental stresses, including heat, cold, desiccation, and reactive oxygen species. Mammalian cells do not naturally biosynthesize ... -
Glycosylation of KEAP1 links nutrient sensing to redox stress signaling.
Chen, Po-Han; Smith, Timothy J; Wu, Jianli; Siesser, Priscila F; Bisnett, Brittany J; Khan, Farhan; Hogue, Maxwell; ... (14 authors) (The EMBO journal, 2017-08)O-GlcNAcylation is an essential, nutrient-sensitive post-translational modification, but its biochemical and phenotypic effects remain incompletely understood. To address this question, we investigated the global transcriptional ...