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Peptide Synthesis References

Peptide and Protein Synthesis References

Altmann M, Muller P, and Trachsel H. (1993) A S. cerevisiae homologue of mammalian translation initiation factor 4B contributes to RNA helicase activity. EMBO J. 12:3997-4003

Aravind L, and Koonin E. (2001) Eukaryote-specific domains in translation initiation factors: Implications for translation regulation and evolution of the translation system. Gen. Res.

Bartig D., Lemkeier K., Frank J., and Klink F. (1992) The archaebacterial hypusine-containing protein: structureal features suggest common ancestry with eukaryotic translation initiation factor 5A. Eur. J. Biochem. 204:751-758

Battiste J., Pestova T., and Hellen C. (1995) The eIF1A solution structure reveals a large RNA-binding surface important for scanning function. Mol. Cell 5:109-119

Castilho B., and Donahue T. (1992) Mutation analysis of the Cys-X-Cys-X-Cys-C-Cys motif in the beta subunit of eukaryotic translation initiation factor 2. Gene expression 2:297-309

Cazzola M., and Skoda R. (2000) Translational pathophysiology: a novel mechanism of human disease. Blood 95:3280-3288

Cigan A., Feng L., and Donahue T. (1998) Initiator tRNA functions in directing the scanning ribosome to the start site of translation. Science 242:93

Cigan A., Pabich E. and Donahue T. (1989) Yeast translation initiation suppressor sui2 encodes the alpha subunit of eukaryotic initiation factor 2 and share sequence identity with the human alpha subunit. PNSA 86:2784-2788

Chakrabarti A. and Maitra U. (1991) Function of eukaryotic initiation factor 5 in the formation of an 80S ribosomal polypeptide chain initiation complex. J. Biol. Chem. 266:14038-14045

Craig AW, Haghighat A, Yu AT, Sonenberg N. (1998) Interaction of polyadenylate-binding protein with the eIF4G homologue

PAIP enhances translation. Nature. Apr 2:392 (6675):520-523

Danaie P., Wittmer B., Altmann M., and Trachsel H. (1995) Isolation of a protein complex containing translation initiation factor Prt1 from Saccharomyces cerevaisiae. J. Biol. Chem. 270: 4288-4292

Dever T., Wei C and Hershey J. (1994) Determination of the amino acid sequence of rabbit, human and wheat germ protein synthesis factor eIF-4C by cloning and chemical sequencing. J. Bio. Chem. 269: 3212-3218

Donahue T., Cigan A., and Catilho B. (1998) Mutations at a Zn(II) finger motif in the yeast eIF-2beta gene alter ribosomal start-site selection during the scanning process. Cell 54:621-632

Dorris D., Erickson F., and Hannig E. (1995) Mutations in GCD11, the structural gene for eIF2-gamma in yeast, after translational regulation of GCN4 and the selection of the start site for protein synthesis. EMBO J. 14:2239-2249

Dube P., Wieske M., Startk., and Zemlin F. (1998) Correlation of the expansion segments in mammalian rRNA with the fine structure of the 80S ribosome: a cryoelectron microscopic reconstruction of the rabbit reticulocyte ribosome at 21 angostroms resolution. J. Mol. Biol. 279:403-421

Erickson F., Harding L., Dorris D., and Hanning E. (1996) Ligand interactions with the eukaryotic translation initiation factor 2: role of the gamma-subunit. EMBO J. 15:6311-6320

Fletcher C., Pestova T., and Hellen C. (1999) Structure and interaction of translation initiation factor eIF1. EMBO J. 18:2631-2637

FlynnA., Shatsby I., Proud C., and Kaminski A. (1994) The RNA-binding properties of protein synthesis initiation factor eIF-2. Biochim. Biophys. Acta. 1219:293-301

Furuichi Y., and K-I Miura. (1975) A blocked structure at the 5' terminus of mRNA from cytoplasmic polyhedrosis virus. Nature 253: 374-375

Furuichi et al. (1997) 5'-terminal structure and mRNA stability. Nature 266 235-239

Gallie, DR. (1991) The cap and poly(A) tail function synergistically to regulate mRNA translational efficiency. Genes Dev. 5:2108-2116

Gerbi SA. (1996) Expansion segments: regions of variable size that interrupt the universal core secondary structure of ribosomal RNA. In: Ribosomal RNA: Structure, Evolution, Processing and Function in Protein Biosynthesis. CRC, New York

Gorbalenya A., and Koonin E. (1993) Helicases: amino acid sequence comparisons and structure-function relationships. Curr/ Opin. Struc. Biol. 3:419-429

Jackson RJ. (1991) RNA translation. Initiation without an end. Nature 353(6339):14-15

Konarska M., Filipowicz W., and Gross H. (1981) Binding of ribosomes to linear and circular forms of the 5'-terminal leader fragment of tobacco mosaic virus RNA. Eur. J. Biochem. 114:221

Kozak M., and Shatkin A. (1978) Migration of 40S ribosomal subunits on mRNA in the presence of edeine. J. Biol. Chem. 253:6568-6574

Kozak M. (1979) Inability of circular mRNA to attach eukaryotic ribosomes. Nature 280:82

Kozak M. (1980) Role of ATP in binding and migration of 40S ribosomal subunits. Cell 22:971

Kozak M. (1983) Translation of insulin-related polypeptides from messenger RNAs with tandemly reiterated copies of the ribosome binding site. Cell 34:971

Kozak M. (1986) Influences of mRNA secondary structure on initiation by eukaryotic ribosomes. PNAS 83: 2850

Kozak M. (1989) The scanning model for translation: an update. J. Cell. Biol. 9: 5134

Kozak M. (1991) Structural features in eukaryotic mRNAs that modulate the initiation of translation. J. Biol. Chem. 266: 19867-19870

Kozak M. (1992) Circumstances and mechanisms of initiation of translation by secondary structure in eukaryotic mRNAs. Review Mol. Cell. Biol. 9:5134

Kozak M. (1995) Adherence to the first-AUG rule when a second AUG codon follows closely upon the first. Proc. Natl. Acad. Sci. 92:7134

Kozak M. (1992) A consideration of alternative models for the initation of translation in eukaryotes. Mole. Biol. 27:385-402

Kozak M. (1992) A consideration of alternative models for the initiation of translation in eukaryotes. Crit. Rev. Biochem and Mol. Bio. 27:385-402

Kozak M. (1999) Initiation of translation in prokaryotes and eukaryotes. Review Gene 234: 187-208

Kyripides N. and Woese C. (1998) Universally conserved translation initiation factors. RNAS 95:224-228

La Teana A., Pon C., and Gualezrzi C. (1996) Late events in translation initiation: adjustment of initiatior tRNA in the ribosomal P site. J. Mol. Biol. 256: 667-675

Lawrence C., Abraham R. (1997) PHAS-4E-BPs as regulators of mRNA translation and cell proliferation. Trends in Biochem. Sci. 22: 345-349

Lawson T., Lee K., Maimone M., and Merrick W. et al. (1989) Dissociation of double-stranded polynucleotide helical structures by eukaryotic initiation factors, as revealed by a novel assay. Biochemistry 28: 4729-4734

Le H., Tanguay R., Balesta M., et al. (1997) The translation initiation factors eIFiso4G and eIF4B with the poly(A) binding protein to increase its RNA binding affinity. J. Biol. Chem. 272: 16247-16255

Marcotrigiano J., Gingras A., and Burley S. (1997) Cocrystal structure of the messenger RNA 5' cap-binding protein (eIF4E) bound to 7-methyl-GDP. Cell 89:951-961

Marcotrigiano J., Gingras A., and Burley S. (1999) Cap-dependent translation intiation in eukaryotes is regulated by molecular mimic of eIF 4G. Mol. Cell. 3:707-716

Marcotrigiano J., Lomakin IB., Sonenberg N., Pestova TV., et al. (2001) A conserved HEAT domain within eIF4G directs assembly mRNAs as initiation factor eIF-4B. Arch. Biochem Biophys. 276:6

Molecular Biology (1999) Weaver, Robert Frank. The McGraw-Hill Companies, Inc. (USA)

Morgan D., et al. (2000) A comparison of the yeast and rabbit 80S ribosome reveals the topology of the nascent chain ext tunnel, inter-subunit bridges and mammalian rRNA expansion segments. J. Biol. Chem. 301:301-321

Muller PP, Trachsel H. Translation and regulation of translation in the yeast Saccharomyces cerevisiae. Eur. J. Biochem. 1990 31:257-261. Review

Munroe D. and Jacobson A. (1990) mRNA poly(A) tail, a 3'enhanced of translaitonal initiation. Mol. Cell. Biol. 10:3441

Naranda T., Kainuma M., et al. (1997) The 39-kilodalton subunit of eukaryotic translation initation factor 3 is essential for the complex's integrity and cell viability in Saccharonyces cerevisiae. Mol. Cell. Biol.

Naranda T., et al (1994) Two structural domains of initiation factor eIF-4B are involved in binding RNA. J. Biol. Chem. 269: 14465-14472

Otero J., Ashe M., 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. 18:3153-3163

Pause A., and Sonenberg N. (1992) Mutational analysis of a DEAD box RNA helicase: the mammalian translation initiation factor eIF-4A. EMBO J. 11: 2643-2654

Pestova T., et al. (1998) Eukaryotic ribosomes require initiation factors 1 and 1A to locate initiation codons. Nature 394: 854-859

Pestova T., et al. (2000) The joining of ribosomal subunits in eukaryotes requires eIF5B. Nature 403:332-335

Pestova T., et al. (2000) The structure and function of initiation factors in eukaryotic protein synthesis. Review. Cell Mol. Life Sci. 57:651-674

Piron M, et al. (1998) Rotavirus RNA-binding protein NSP3 interacts with eIF4GI and evicts the poly(A) binding protein from eIF4F. EMBO J. 17:5811-5821

Preiss T., Hentze M.W. From factors to mechanisms: translation and translational control in eukaryotes. Curr. Opin. Genet. Dev. 5:515-521. Review.

Price N., Kimball S., et al. (1996) Cloning of cDNA for the gamma subunit of mammalian translation initiation factor 2B, the guanine-exchange factor for the eukaryotic initiation factor 2. Biochem. J. 318:631-636

Raychaudhuri P., et al. (1985) Eukaryotic initiation factor 5 from calf liver is a single polypeptide chain of Mr=62,000. J. Biol. Chem. 260:2132-2139

Rahul C., et al. (1999) Recognition of polyadenylate RNA by the poly(A)-binding protein. Cell 98:835-845

Rhoads R.E. (1993) Regulation of eukaryotic protein synthesis by initiation factors. J. Biol. Chem. 268: 3017-3020

Rozen F., et al. (1990) Bidirectional RNA helicase activity of eukaryotic translation initiation factors 4A and 4F. Mol. Cell Biol. 10:1134-1144

Sachs A., Sarnow P., et al. (1997) Starting at the beginning, middle and end: translation initiation in eukaryotes. Cell 89:831-838

Sallaas M. (1999) Internal ribosome entry site biology and its use in expression vestors. Curr. Op. Biol. 10:458-464

Sanvito F., Piatti S., Villa A. et al. (1999) The beta4 integrin interactor p27 is an essential nuclear matrix protein involved in 60S ribosomal subunit assembly. J. Cell Biol. 144:823-838

Schmid S., and Linder P. (1991) Translation initiation factor 4A from S. cerevisiae: analysis of residues conserved in the DEAD family of RNA helicases. Mol. Cell Biol. 11:3463-3471

Sette M, Spurin R., et al. (1997) The structure of the translational initiation iF1 from E.coli contains an oligomer-binding motif. EMBO J. 16:1436-1443

Sutrave P., Schafer B., et al. (1994) Isolation, identification and characterization of the FUN12 gene S.cerevisiae. Gene 146:209-213

Trachsel H. (1996) Binding of initiator tRNA to ribosomes. Cold Spring Harbor Press pp.113-138

Van Heutgen H., Kasperaitis M., et al. (1991) Evidence that eIF-2 is a cap-binding protein that stimulates cap recognition by eIF-4B and eIF-4F. J. Biol. Chem. 266:7229

Vershoor A., Srivastava S., and Frank J. (1996) Native 3D structure of eukaryotic 80S ribosome: morphological homology with the E.coli 70S ribosome. J. Cell Biol. 133:495-505

Wei, C.L., Kainuma, M., and Hershey J. (1995) Protein synthesis initiation factor eIF-1A is a moderately abundant RNA-binding protein. J. Biol. Chem.

Wei N., and Deng, X. (1999) Making sense of the COP9 signalosome. A regulatory protein complex conserved from Abrabidopsis to human. Trends Genet. 15: 98-103

Wei C., MacMillan S., and Hershey J. (1995) Protein synthesis initiation factor eIF-1A is a moderately abundant RNA-binding protein. J. Biol. Chem. 270: 5764-5771

Wilson A., and Noller H. (1998) Molecular movement inside the translational engine. Cell 92:337-349

Wool I., Chan Y., and Gluck A. (1996) Mammalian ribosomes: the structure and the evolution of proteins. In: Translational Control. Cold Springs Laboratory Press 685-732

Yoon H., and Donahue T. (1992) The suil suppressor locus in Saccharomyces cerevisiae encodes a translation factor the functions during initiator tRNA recognition of the start codon. Mol. Cell Biol. 12:248-260

Zuk D., and Jacobson A. (1998) A single amino acid substitution in yeast eIF-5A results in mRNA stabilization. EMBO J.17:2914-2925


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