Other names published for SWR1: YDR334W
SWR1 LITERATURE TOPICS
- Curated Literature
- Genetics/Cell Biology
- Nucleic Acid Information
- Gene Product Information
- Related Genes/Proteins
- Cross-species Expression
- Fungal Related Genes/Proteins
- Non-Fungal Related Genes/Proteins
- Research Aids
- Genome-wide Analysis
- Proteome-wide Analysis
- Additional Information
SWR1 - Non-Fungal Related Genes/Proteins (16)
| Reference | Other Genes Addressed |
|---|---|
| Flaus A and Owen-Hughes T (2011) Mechanisms for ATP-dependent chromatin remodelling: the means to the end. FEBS J 278(19):3579-95 | |
| Polo SE and Jackson SP (2011) Dynamics of DNA damage response proteins at DNA breaks: a focus on protein modifications. Genes Dev 25(5):409-33 | |
| Yun H, et al. (2011) Identification of regulators required for the reactivation of FLOWERING LOCUS C during Arabidopsis reproduction. Planta 234(6):1237-50 | |
| On T, et al. (2010) The evolutionary landscape of the chromatin modification machinery reveals lineage specific gains, expansions, and losses. Proteins 78(9):2075-89 | |
| Xu Y, et al. (2010) OsPIE1, the rice ortholog of Arabidopsis PHOTOPERIOD-INDEPENDENT EARLY FLOWERING1, is essential for embryo development. PLoS One 5(6):e11299 | |
| Clapier CR and Cairns BR (2009) The biology of chromatin remodeling complexes. Annu Rev Biochem 78():273-304 | |
| Auger A, et al. (2008) Eaf1 is the platform for NuA4 molecular assembly that evolutionarily links chromatin acetylation to ATP-dependent exchange of histone H2A variants. Mol Cell Biol 28(7):2257-70 | |
| Knizewski L, et al. (2008) Snf2 proteins in plants: gene silencing and beyond. Trends Plant Sci 13(10):557-65 | |
| Szerlong H, et al. (2008) The HSA domain binds nuclear actin-related proteins to regulate chromatin-remodeling ATPases. Nat Struct Mol Biol 15(5):469-76 | |
| Choi K, et al. (2007) Arabidopsis homologs of components of the SWR1 complex regulate flowering and plant development. Development 134(10):1931-41 | |
| Gevry N, et al. (2007) p21 transcription is regulated by differential localization of histone H2A.Z. Genes Dev 21(15):1869-81 | |
| Wong MM, et al. (2007) The chromatin remodeling protein, SRCAP, is critical for deposition of the histone variant H2A.Z at promoters. J Biol Chem 282(36):26132-9 | |
| Guillemette B and Gaudreau L (2006) Reuniting the contrasting functions of H2A.Z. Biochem Cell Biol 84(4):528-35 | |
| Ruhl DD, et al. (2006) Purification of a human SRCAP complex that remodels chromatin by incorporating the histone variant H2A.Z into nucleosomes. Biochemistry 45(17):5671-7 | |
| Cai Y, et al. (2005) The mammalian YL1 protein is a shared subunit of the TRRAP/TIP60 histone acetyltransferase and SRCAP complexes. J Biol Chem 280(14):13665-70 | |
| Jin J, et al. (2005) A mammalian chromatin remodeling complex with similarities to the yeast INO80 complex. J Biol Chem 280(50):41207-12 |



