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Prion properties of the Sup35 protein of yeast Pichia methanolica.
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- EMBO Journal, 2000, v. 19, n. 3, p. 324, doi. 10.1093/emboj/19.3.324
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- Article
Mechanism of inhibition of ?<sup>+</sup> prion determinant propagation by a mutation of the N-terminus of the yeast Sup35 protein.
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- EMBO Journal, 1998, v. 17, n. 19, p. 5805, doi. 10.1093/emboj/17.19.5805
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- Article
Yeast Sup35 Prion Structure: Two Types, Four Parts, Many Variants.
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- International Journal of Molecular Sciences, 2019, v. 20, n. 11, p. 2633, doi. 10.3390/ijms20112633
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- Article
The Pub1 and Upf1 Proteins Act in Concert to Protect Yeast from Toxicity of the [PSI+] Prion.
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- International Journal of Molecular Sciences, 2018, v. 19, n. 11, p. 3663, doi. 10.3390/ijms19113663
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- Article
The Role of the N-Terminal Oligopeptide Repeats of the Yeast Sup35 Prion Protein in Propagation and Transmission of Prion Variants.
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- Genetics, 2006, v. 172, n. 2, p. 827, doi. 10.1534/genetics.105.048660
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- Article
Novel Non-Mendelian Determinant Involved in the Control of Translation Accuracy in Saccharomyces...
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- Genetics, 2002, v. 160, n. 1, p. 25, doi. 10.1093/genetics/160.1.25
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- Article
The SUP35 omnipotent suppressor gene is involved in the maintenance of the non-mendelian...
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- Genetics, 1994, v. 137, n. 3, p. 671, doi. 10.1093/genetics/137.3.671
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- Article
Interaction of the Yeast Omnipotent Suppressors SUP1(SUP45) and SUP2(SUP35) With Non-Mendelian Factor.
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- Genetics, 1991, v. 128, n. 3, p. 513
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- Article
N-terminal region of Saccharomyces cerevisiae eRF3 is essential for the functioning of the eRF1/eRF3 complex beyond translation termination.
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- BMC Molecular Biology, 2006, v. 7, p. 1, doi. 10.1186/1471-2199-7-34
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- Article
Aggregation and retention of human urokinase type plasminogen activator in the yeast endoplasmic reticulum.
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- BMC Molecular Biology, 2002, v. 3, p. 15, doi. 10.1186/1471-2199-3-15
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- Article
IttIp, a novel protein inhibiting translation termination in Saccharomyces cerevisiae.
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- BMC Molecular Biology, 2001, v. 2, p. 1
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- Article
A protein polymerization cascade mediates toxicity of non-pathological human huntingtin in yeast.
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- Scientific Reports, 2015, p. 18407, doi. 10.1038/srep18407
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- Article
Proteomic Screening for Amyloid Proteins.
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- PLoS ONE, 2014, v. 9, n. 12, p. 1, doi. 10.1371/journal.pone.0116003
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- Article
The Effects of Amino Acid Composition of Glutamine-Rich Domains on Amyloid Formation and Fragmentation.
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- PLoS ONE, 2012, v. 7, n. 10, p. 1, doi. 10.1371/journal.pone.0046458
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- Article
Amyloid-Mediated Sequestration of Essential Proteins Contributes to Mutant Huntingtin Toxicity in Yeast.
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- PLoS ONE, 2012, v. 7, n. 1, p. 1, doi. 10.1371/journal.pone.0029832
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- Article
[ PSI<sup>+</sup>] prion generation in yeast: characterization of the 'strain' difference.
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- Yeast, 2001, v. 18, n. 6, p. 489, doi. 10.1002/yea.700
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- Article
Mutation of the homologue of GDP-mannose pyrophosphorylase alters cell wall structure, protein glycosylation and secretion in Hansenula polymorpha.
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- Yeast, 2001, v. 18, n. 5, p. 391, doi. 10.1002/yea.678
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- Article
A novel vacuolar protein encoded by SSU21 / MCD4 is involved in cell wall integrity in yeast.
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- Yeast, 1999, v. 15, n. 14, p. 1485, doi. 10.1002/(SICI)1097-0061(199910)15:14<1485::AID-YEA477>3.0.CO;2-4
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- Article
Vectors for rapid selection of integrants with different plasmid copy numbers in the yeast Hansenula polymorpha DL1.
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- Yeast, 1999, v. 15, n. 7, p. 541, doi. 10.1002/(SICI)1097-0061(199905)15:7<541::AID-YEA392>3.0.CO;2-G
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Sequences of Saccharomyces cerevisiae 2 μm DNA improving plasmid partitioning in Hansenula polymorpha.
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- Yeast, 1998, v. 14, n. 1, p. 1, doi. 10.1002/(SICI)1097-0061(19980115)14:1<1::AID-YEA195>3.0.CO;2-D
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A disruption-replacement approach for the targeted integration of foreign genes in Hansenula polymorpha.
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- Yeast, 1995, v. 11, n. 13, p. 1241, doi. 10.1002/yea.320111304
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- Article
Plasmid reorganization during integrative transformation in Hansenula polymorpha.
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- Yeast, 1995, v. 11, n. 4, p. 343, doi. 10.1002/yea.320110407
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I. Yeast sequencing reports. Isolation and characterization of the LEU2 gene of Hansenula polymorpha.
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- Yeast, 1994, v. 10, n. 4, p. 509, doi. 10.1002/yea.320100410
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- Article
Dosage-dependent translational suppression in yeast Saccharomyces cerevisiae.
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- Yeast, 1992, v. 8, n. 7, p. 489, doi. 10.1002/yea.320080702
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- Article
Divergence and conservation of SUP2(SUP35) gene of yeasts Pichia pinus and Saccharomyces cerevisiae.
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- Yeast, 1990, v. 6, n. 6, p. 461, doi. 10.1002/yea.320060603
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- Article
Deletion analysis of the SUP35 gene of the yeast <em>Saccharomyces cerevislae</em> reveals two non-overlapping functional regions in the encoded protein.
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- Molecular Microbiology, 1993, v. 7, n. 5, p. 683, doi. 10.1111/j.1365-2958.1993.tb01159.x
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- Article
Ribosome-bound Pub1 modulates stop codon decoding during translation termination in yeast.
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- FEBS Journal, 2017, v. 284, n. 12, p. 1914, doi. 10.1111/febs.14099
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Ssb1 chaperone is a [PSI<sup> +</sup>] prion-curing factor.
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- Current Genetics, 2001, v. 39, n. 2, p. 62, doi. 10.1007/s002940000180
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Genetic Evidence for the Role of the Vacuole in Supplying Secretory Organelles with Ca<sup>2+</sup> in Hansenula polymorpha.
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- PLoS ONE, 2015, v. 10, n. 12, p. 1, doi. 10.1371/journal.pone.0145915
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Mutation of the protein- O-mannosyltransferase enhances secretion of the human urokinase-type plasminogen activator in Hansenula polymorpha.
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- Yeast, 2005, v. 22, n. 13, p. 1037, doi. 10.1002/yea.1297
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- Article
Dissection of differential vanadate sensitivity in two Ogataea species links protein glycosylation and phosphate transport regulation.
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- Scientific Reports, 2018, v. 8, n. 1, p. 1, doi. 10.1038/s41598-018-34888-5
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- Article