Other names published for SAR1: YPL218W
SAR1 LITERATURE TOPICS
- Curated Literature
- Genetics/Cell Biology
- Nucleic Acid Information
- Gene Product Information
- Related Genes/Proteins
- Research Aids
- Genome-wide Analysis
- Proteome-wide Analysis
- Other Topics
- Additional Information
SAR1 - Protein-protein Interactions (24)
| Reference | Other Genes Addressed |
|---|---|
| Copic A, et al. (2012) ER cargo properties specify a requirement for COPII coat rigidity mediated by Sec13p. Science 335(6074):1359-62 | |
| Kodera C, et al. (2011) Sed4p stimulates sar1p GTP hydrolysis and promotes limited coat disassembly. Traffic 12(5):591-9 | |
| Lord C, et al. (2011) Sequential interactions with Sec23 control the direction of vesicle traffic. Nature 473(7346):181-6 | |
| Futai E and Schekman R (2005) Purification and functional properties of yeast Sec12 GEF. Methods Enzymol 404():74-82 | |
| Sato K and Nakano A (2005) Dissection of COPII subunit-cargo assembly and disassembly kinetics during Sar1p-GTP hydrolysis. Nat Struct Mol Biol 12(2):167-74 | |
| Antonny B, et al. (2003) Self-assembly of minimal COPII cages. EMBO Rep 4(4):419-24 | |
| Giraudo CG and Maccioni HJ (2003) Endoplasmic reticulum export of glycosyltransferases depends on interaction of a cytoplasmic dibasic motif with Sar1. Mol Biol Cell 14(9):3753-66 | |
| Barlowe C (2002) Three-dimensional structure of a COPII prebudding complex. Dev Cell 3(4):467-8 | |
| Bi X, et al. (2002) Structure of the Sec23/24-Sar1 pre-budding complex of the COPII vesicle coat. Nature 419(6904):271-7 | |
| Miller E, et al. (2002) Cargo selection into COPII vesicles is driven by the Sec24p subunit. EMBO J 21(22):6105-13 | |
| Supek F, et al. (2002) Sec16p potentiates the action of COPII proteins to bud transport vesicles. J Cell Biol 158(6):1029-38 | |
| Antonny B, et al. (2001) Dynamics of the COPII coat with GTP and stable analogues. Nat Cell Biol 3(6):531-7 | |
| Belden WJ and Barlowe C (2001) Purification of functional Sec13p-Sec31p complex, a subunit of COPII coat. Methods Enzymol 329:438-43 | |
| Huang M, et al. (2001) Crystal structure of Sar1-GDP at 1.7 A resolution and the role of the NH2 terminus in ER export. J Cell Biol 155(6):937-48 | |
| Lederkremer GZ, et al. (2001) Structure of the Sec23p/24p and Sec13p/31p complexes of COPII. Proc Natl Acad Sci U S A 98(19):10704-9 | |
| Matsuoka K, et al. (2001) Surface structure of the COPII-coated vesicle. Proc Natl Acad Sci U S A 98(24):13705-9 | |
| Matsuoka K and Schekman R (2000) The use of liposomes to study COPII- and COPI-coated vesicle formation and membrane protein sorting. Methods 20(4):417-28 | |
| Peng R, et al. (2000) Evidence for overlapping and distinct functions in protein transport of coat protein Sec24p family members. J Biol Chem 275(15):11521-8 | |
| Gilstring CF, et al. (1999) Shr3p mediates specific COPII coatomer-cargo interactions required for the packaging of amino acid permeases into ER-derived transport vesicles. Mol Biol Cell 10(11):3549-65 | |
| Kuehn MJ, et al. (1998) COPII-cargo interactions direct protein sorting into ER-derived transport vesicles. Nature 391(6663):187-90 | |
| Matsuoka K, et al. (1998) COPII-coated vesicle formation reconstituted with purified coat proteins and chemically defined liposomes. Cell 93(2):263-75 | |
| Springer S and Schekman R (1998) Nucleation of COPII vesicular coat complex by endoplasmic reticulum to Golgi vesicle SNAREs. Science 281(5377):698-700 | |
| Salama NR, et al. (1993) The Sec13p complex and reconstitution of vesicle budding from the ER with purified cytosolic proteins. EMBO J 12(11):4073-82 | |
| Barnes G, et al. (1992) Yeast proteins associated with microtubules in vitro and in vivo. Mol Biol Cell 3(1):29-47 |




