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  • Author: Sachs AB
  • References

Author: Sachs AB


References 33 references


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  • Holmes LE, et al. (2004) Loss of translational control in yeast compromised for the major mRNA decay pathway. Mol Cell Biol 24(7):2998-3010 PMID:15024087
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  • Gross JD, et al. (2003) Ribosome loading onto the mRNA cap is driven by conformational coupling between eIF4G and eIF4E. Cell 115(6):739-50 PMID:14675538
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  • Algire MA, et al. (2002) Development and characterization of a reconstituted yeast translation initiation system. RNA 8(3):382-97 PMID:12008673
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  • Inada T, et al. (2002) One-step affinity purification of the yeast ribosome and its associated proteins and mRNAs. RNA 8(7):948-58 PMID:12166649
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  • Ashe MP, et al. (2001) A novel eIF2B-dependent mechanism of translational control in yeast as a response to fusel alcohols. EMBO J 20(22):6464-74 PMID:11707417
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  • Gross JD, et al. (2001) Interactions of the eukaryotic translation initiation factor eIF4E. Cold Spring Harb Symp Quant Biol 66:397-402 PMID:12762042
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  • Ashe MP, et al. (2000) Glucose depletion rapidly inhibits translation initiation in yeast. Mol Biol Cell 11(3):833-48 PMID:10712503
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  • Fortes P, et al. (2000) The yeast nuclear cap binding complex can interact with translation factor eIF4G and mediate translation initiation. Mol Cell 6(1):191-6 PMID:10949040
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  • Sachs AB (2000) Cell cycle-dependent translation initiation: IRES elements prevail. Cell 101(3):243-5 PMID:10847679
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  • Winstall E, et al. (2000) The Saccharomyces cerevisiae RNA-binding protein Rbp29 functions in cytoplasmic mRNA metabolism. J Biol Chem 275(29):21817-26 PMID:10764794
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  • Hershey PE, et al. (1999) The Cap-binding protein eIF4E promotes folding of a functional domain of yeast translation initiation factor eIF4G1. J Biol Chem 274(30):21297-304 PMID:10409688
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  • Morrissey JP, et al. (1999) Decapping of stabilized, polyadenylated mRNA in yeast pab1 mutants. Yeast 15(8):687-702 PMID:10392446
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  • Neff CL and Sachs AB (1999) Eukaryotic translation initiation factors 4G and 4A from Saccharomyces cerevisiae interact physically and functionally. Mol Cell Biol 19(8):5557-64 PMID:10409745
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  • Otero LJ, et al. (1999) The yeast poly(A)-binding protein Pab1p stimulates in vitro poly(A)-dependent and cap-dependent translation by distinct mechanisms. EMBO J 18(11):3153-63 PMID:10357826
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  • Boeck R, et al. (1998) Capped mRNA degradation intermediates accumulate in the yeast spb8-2 mutant. Mol Cell Biol 18(9):5062-72 PMID:9710590
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  • Brown CE and Sachs AB (1998) Poly(A) tail length control in Saccharomyces cerevisiae occurs by message-specific deadenylation. Mol Cell Biol 18(11):6548-59 PMID:9774670
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  • Kessler SH and Sachs AB (1998) RNA recognition motif 2 of yeast Pab1p is required for its functional interaction with eukaryotic translation initiation factor 4G. Mol Cell Biol 18(1):51-7 PMID:9418852
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  • Wells SE, et al. (1998) Circularization of mRNA by eukaryotic translation initiation factors. Mol Cell 2(1):135-40 PMID:9702200
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  • Deardorff JA and Sachs AB (1997) Differential effects of aromatic and charged residue substitutions in the RNA binding domains of the yeast poly(A)-binding protein. J Mol Biol 269(1):67-81 PMID:9193001
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  • Tarun SZ and Sachs AB (1997) Binding of eukaryotic translation initiation factor 4E (eIF4E) to eIF4G represses translation of uncapped mRNA. Mol Cell Biol 17(12):6876-86 PMID:9372919
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  • Tarun SZ, et al. (1997) Translation initiation factor eIF4G mediates in vitro poly(A) tail-dependent translation. Proc Natl Acad Sci U S A 94(17):9046-51 PMID:9256432
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  • Boeck R, et al. (1996) The yeast Pan2 protein is required for poly(A)-binding protein-stimulated poly(A)-nuclease activity. J Biol Chem 271(1):432-8 PMID:8550599
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  • Brown CE, et al. (1996) PAN3 encodes a subunit of the Pab1p-dependent poly(A) nuclease in Saccharomyces cerevisiae. Mol Cell Biol 16(10):5744-53 PMID:8816488
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  • Tarun SZ and Sachs AB (1996) Association of the yeast poly(A) tail binding protein with translation initiation factor eIF-4G. EMBO J 15(24):7168-77 PMID:9003792
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  • Tarun SZ and Sachs AB (1995) A common function for mRNA 5' and 3' ends in translation initiation in yeast. Genes Dev 9(23):2997-3007 PMID:7498795
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  • Lowell JE, et al. (1992) 3'-UTR-dependent deadenylation by the yeast poly(A) nuclease. Genes Dev 6(11):2088-99 PMID:1358757
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  • Sachs AB and Deardorff JA (1992) Translation initiation requires the PAB-dependent poly(A) ribonuclease in yeast. Cell 70(6):961-73 PMID:1339314
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  • Foreman PK, et al. (1991) The Saccharomyces cerevisiae RPB4 gene is tightly linked to the TIF2 gene. Nucleic Acids Res 19(10):2781 PMID:2041753
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  • Sachs AB and Davis RW (1990) Translation initiation and ribosomal biogenesis: involvement of a putative rRNA helicase and RPL46. Science 247(4946):1077-9 PMID:2408148
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  • Sachs AB and Kornberg RD (1990) Purification and characterization of polyadenylate-binding protein. Methods Enzymol 181:332-52 PMID:2116569
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  • Sachs AB and Davis RW (1989) The poly(A) binding protein is required for poly(A) shortening and 60S ribosomal subunit-dependent translation initiation. Cell 58(5):857-67 PMID:2673535
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  • Sachs AB, et al. (1987) A single domain of yeast poly(A)-binding protein is necessary and sufficient for RNA binding and cell viability. Mol Cell Biol 7(9):3268-76 PMID:3313012
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  • Sachs AB, et al. (1986) A single gene from yeast for both nuclear and cytoplasmic polyadenylate-binding proteins: domain structure and expression. Cell 45(6):827-35 PMID:3518950
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