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Other names published for SNR7-L: SNR7, U5 snRNA, U5L, snR7-L
SNR7-L LITERATURE TOPICS
- Curated Literature
- Genetics/Cell Biology
- Nucleic Acid Information
- Gene Product Information
- Related Genes/Proteins
- Research Aids
- Genome-wide Analysis
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- Additional Information
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SNR7-L Literature Curation Summary
Curated References for SNR7-L: 82
Date of last curation: 2013-04-03
| Reference | Other Genes Addressed |
|---|---|
| O'Keefe RT and Newman AJ (1998) Functional analysis of the U5 snRNA loop 1 in the second catalytic step of yeast pre-mRNA splicing. EMBO J 17(2):565-74 | |
| Chanfreau G, et al. (1997) Alternative 3'-end processing of U5 snRNA by RNase III. Genes Dev 11(20):2741-51 | |
| Ursic D, et al. (1997) The yeast SEN1 gene is required for the processing of diverse RNA classes. Nucleic Acids Res 25(23):4778-85 | |
| Seshadri V, et al. (1996) Genetic studies of the PRP17 gene of Saccharomyces cerevisiae: a domain essential for function maps to a nonconserved region of the protein. Genetics 143(1):45-55 | |
| van der Aart QJ, et al. (1996) Sequence analysis of the 43 kb CRM1-YLM9-PET54-DIE2-SMI1-PHO81-YHB4-PFK1 region from the right arm of Saccharomyces cerevisiae chromosome VII. Yeast 12(4):385-90 | |
| Roy J, et al. (1995) Structurally related but functionally distinct yeast Sm D core small nuclear ribonucleoprotein particle proteins. Mol Cell Biol 15(1):445-55 | |
| Fabrizio P, et al. (1994) Isolation of S. cerevisiae snRNPs: comparison of U1 and U4/U6.U5 to their human counterparts. Science 264(5156):261-5 | |
| Rymond BC (1993) Convergent transcripts of the yeast PRP38-SMD1 locus encode two essential splicing factors, including the D1 core polypeptide of small nuclear ribonucleoprotein particles. Proc Natl Acad Sci U S A 90(3):848-52 | |
| Blanton S, et al. (1992) PRP38 encodes a yeast protein required for pre-mRNA splicing and maintenance of stable U6 small nuclear RNA levels. Mol Cell Biol 12(9):3939-47 | |
| Guthrie C (1991) Messenger RNA splicing in yeast: clues to why the spliceosome is a ribonucleoprotein. Science 253(5016):157-63 | |
| Newman A and Norman C (1991) Mutations in yeast U5 snRNA alter the specificity of 5' splice-site cleavage. Cell 65(1):115-23 | |
| Seraphin B, et al. (1991) Genetic depletion indicates a late role for U5 snRNP during in vitro spliceosome assembly. Nucleic Acids Res 19(14):3857-60 | |
| Hausner TP, et al. (1990) Evidence for base-pairing between mammalian U2 and U6 small nuclear ribonucleoprotein particles. Genes Dev 4(12A):2146-56 | |
| Egeland DB, et al. (1989) Molecular analysis of dicot and monocot small nuclear RNA populations. Plant Cell 1(6):633-43 | |
| Guthrie C and Patterson B (1988) Spliceosomal snRNAs. Annu Rev Genet 22:387-419 | |
| Cheng SC and Abelson J (1987) Spliceosome assembly in yeast. Genes Dev 1(9):1014-27 | |
| Patterson B and Guthrie C (1987) An essential yeast snRNA with a U5-like domain is required for splicing in vivo. Cell 49(5):613-24 | |
| Riedel N, et al. (1987) A subset of yeast snRNA's contains functional binding sites for the highly conserved Sm antigen. Science 235(4786):328-31 | |
| Siliciano PG, et al. (1987) An essential snRNA from S. cerevisiae has properties predicted for U4, including interaction with a U6-like snRNA. Cell 50(4):585-92 | |
| Siliciano PG, et al. (1987) Saccharomyces cerevisiae has a U1-like small nuclear RNA with unexpected properties. Science 237(4821):1484-7 | |
| Tollervey D (1987) High level of complexity of small nuclear RNAs in fungi and plants. J Mol Biol 196(2):355-61 | |
| Riedel N, et al. (1986) Small nuclear RNAs from Saccharomyces cerevisiae: unexpected diversity in abundance, size, and molecular complexity. Proc Natl Acad Sci U S A 83(21):8097-101 |



