Other names published for UBI4: SCD2, UB14, ubiquitin, YLL039C
UBI4 LITERATURE TOPICS
- Curated Literature
- Genetics/Cell Biology
- Nucleic Acid Information
- Gene Product Information
- Related Genes/Proteins
- Research Aids
- Other Features
- Strains/Constructs
- Techniques and Reagents
- Genome-wide Analysis
- Proteome-wide Analysis
- Other Topics
- Additional Information
UBI4 - Techniques and Reagents (26)
| Reference | Other Genes Addressed |
|---|---|
| Braten O, et al. (2012) Generation of free ubiquitin chains is up-regulated in stress and facilitated by the HECT domain ubiquitin ligases UFD4 and HUL5. Biochem J 444(3):611-7 | |
| van Wijk SJ, et al. (2012) Role of UbL family modifiers and their binding proteins in cell signaling. Methods Mol Biol 832():163-71 | |
| Kanamori E, et al. (2011) Structure determination of a protein assembly by amino acid selective cross-saturation. Proteins 79(1):179-90 | |
| Laney JD and Hochstrasser M (2011) Analysis of protein ubiquitination. Curr Protoc Protein Sci Chapter 14():Unit14.5 | |
| Sakata E, et al. (2011) The catalytic activity of Ubp6 enhances maturation of the proteasomal regulatory particle. Mol Cell 42(5):637-49 | |
| Wang X, et al. (2011) Intersection of the multivesicular body pathway and lipid homeostasis in RNA replication by a positive-strand RNA virus. J Virol 85(11):5494-503 | |
| Archer CT and Kodadek T (2010) The hydrophobic patch of ubiquitin is required to protect transactivator-promoter complexes from destabilization by the proteasomal ATPases. Nucleic Acids Res 38(3):789-96 | |
| Moriya J, et al. (2009) An NMR method for the determination of protein binding interfaces using TEMPOL-induced chemical shift perturbations. Biochim Biophys Acta 1790(10):1368-76 | |
| Abolmaali S, et al. (2008) Engineered bakers yeast as a sensitive bioassay indicator organism for the trichothecene toxin deoxynivalenol. J Microbiol Methods 72(3):306-12 | |
| Archer CT, et al. (2008) Physical and functional interactions of monoubiquitylated transactivators with the proteasome. J Biol Chem 283(31):21789-98 | |
| Tagwerker C, et al. (2006) A tandem affinity tag for two-step purification under fully denaturing conditions: application in ubiquitin profiling and protein complex identification combined with in vivocross-linking. Mol Cell Proteomics 5(4):737-48 | |
| Apodaca J, et al. (2005) Analysis of ubiquitin chain-binding proteins by two-hybrid methods. Methods Enzymol 399:157-64 | |
| Katzmann DJ and Wendland B (2005) Analysis of Ubiquitin-Dependent Protein Sorting Within the Endocytic Pathway in Saccharomyces cerevisiae. Methods Enzymol 399:192-211 | |
| Mayor T and Deshaies RJ (2005) Two-Step Affinity Purification of Multiubiquitylated Proteins from Saccharomyces cerevisiae. Methods Enzymol 399:385-92 | |
| Mayor T, et al. (2005) Analysis of polyubiquitin conjugates reveals that the Rpn10 substrate receptor contributes to the turnover of multiple proteasome targets. Mol Cell Proteomics 4(6):741-51 | |
| Zabrouskov V, et al. (2005) New and Automated MS(n) Approaches for Top-Down Identification of Modified Proteins. J Am Soc Mass Spectrom 16(12):2027-38 | |
| Charlebois JP, et al. (2003) Electron capture dissociation and 13C,15N depletion for deuterium localization in intact proteins after solution-phase exchange. Anal Chem 75(13):3263-6 | |
| Ling R, et al. (2000) Histidine-tagged ubiquitin substitutes for wild-type ubiquitin in Saccharomyces cerevisiae and facilitates isolation and identification of in vivo substrates of the ubiquitin pathway. Anal Biochem 282(1):54-64 | |
| Dunnwald M, et al. (1999) Detection of transient in vivo interactions between substrate and transporter during protein translocation into the endoplasmic reticulum. Mol Biol Cell 10(2):329-44 | |
| Paz I, et al. (1999) Monitoring dynamics of gene expression in yeast during stationary phase. Gene 236(1):33-42 | |
| Wittke S, et al. (1999) Probing the molecular environment of membrane proteins in vivo. Mol Biol Cell 10(8):2519-30 | |
| Barbet NC, et al. (1996) TOR controls translation initiation and early G1 progression in yeast. Mol Biol Cell 7(1):25-42 | |
| Hottiger T, et al. (1995) 2-micron vectors containing the Saccharomyces cerevisiae metallothionein gene as a selectable marker: excellent stability in complex media, and high-level expression of a recombinant protein from a CUP1-promoter-controlled expression cassette in cis. Yeast 11(1):1-14 | |
| Ellison MJ and Hochstrasser M (1991) Epitope-tagged ubiquitin. A new probe for analyzing ubiquitin function. J Biol Chem 266(31):21150-7 | |
| Liu CC, et al. (1989) Purification of a ubiquitin protein peptidase from yeast with efficient in vitro assays. J Biol Chem 264(34):20331-8 | |
| Bachmair A, et al. (1986) In vivo half-life of a protein is a function of its amino-terminal residue. Science 234(4773):179-86 |





