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  • Author: Taxis C
  • References

Author: Taxis C


References 23 references


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  • Bezold F, et al. (2023) Optogenetic control of Cdc48 for dynamic metabolic engineering in yeast. Metab Eng 79:97-107 PMID:37422133
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  • Hasenjäger S, et al. (2023) C-terminal sequence stability profiling in Saccharomyces cerevisiae reveals protective protein quality control pathways. J Biol Chem 299(9):105166 PMID:37595870
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  • Gramazio S, et al. (2022) Light-induced fermenter production of derivatives of the sweet protein monellin is maximized in prestationary Saccharomyces cerevisiae cultures. Biotechnol J 17(8):e2100676 PMID:35481893
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  • Pook B, et al. (2021) An Optogenetic Toolbox for Synergistic Regulation of Protein Abundance. ACS Synth Biol 10(12):3411-3421 PMID:34797069
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  • Scheffer J, et al. (2019) Degradation of integral membrane proteins modified with the photosensitive degron module requires the cytosolic endoplasmic reticulum-associated degradation pathway. Mol Biol Cell 30(20):2558-2570 PMID:31411939
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  • Lutz AP, et al. (2018) Proteasome Activity Is Influenced by the HECT_2 Protein Ipa1 in Budding Yeast. Genetics 209(1):157-171 PMID:29519818
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  • Renicke C, et al. (2017) The Mitotic Exit Network Regulates Spindle Pole Body Selection During Sporulation of Saccharomyces cerevisiae. Genetics 206(2):919-937 PMID:28450458
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  • Paul VD, et al. (2015) The deca-GX3 proteins Yae1-Lto1 function as adaptors recruiting the ABC protein Rli1 for iron-sulfur cluster insertion. Elife 4:e08231 PMID:26182403
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  • Renicke C, et al. (2013) A tobacco etch virus protease with increased substrate tolerance at the P1' position. PLoS One 8(6):e67915 PMID:23826349
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  • Renicke C, et al. (2013) A LOV2 domain-based optogenetic tool to control protein degradation and cellular function. Chem Biol 20(4):619-26 PMID:23601651
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  • Jungbluth M, et al. (2012) Acetate regulation of spore formation is under the control of the Ras/cyclic AMP/protein kinase A pathway and carbon dioxide in Saccharomyces cerevisiae. Eukaryot Cell 11(8):1021-32 PMID:22660623
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  • Jungbluth M, et al. (2010) Targeted protein depletion in Saccharomyces cerevisiae by activation of a bidirectional degron. BMC Syst Biol 4:176 PMID:21190544
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  • Taxis C, et al. (2009) Efficient protein depletion by genetically controlled deprotection of a dormant N-degron. Mol Syst Biol 5:267 PMID:19401679
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  • Maier P, et al. (2007) Cytokinesis in yeast meiosis depends on the regulated removal of Ssp1p from the prospore membrane. EMBO J 26(7):1843-52 PMID:17347652
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  • Gordon O, et al. (2006) Nud1p, the yeast homolog of Centriolin, regulates spindle pole body inheritance in meiosis. EMBO J 25(16):3856-68 PMID:16888627
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  • Taxis C and Knop M (2006) System of centromeric, episomal, and integrative vectors based on drug resistance markers for Saccharomyces cerevisiae. Biotechniques 40(1):73-8 PMID:16454043
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  • Taxis C, et al. (2006) Dynamic organization of the actin cytoskeleton during meiosis and spore formation in budding yeast. Traffic 7(12):1628-42 PMID:17118118
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  • Taxis C, et al. (2005) Spore number control and breeding in Saccharomyces cerevisiae: a key role for a self-organizing system. J Cell Biol 171(4):627-40 PMID:16286509
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  • Janke C, et al. (2004) A versatile toolbox for PCR-based tagging of yeast genes: new fluorescent proteins, more markers and promoter substitution cassettes. Yeast 21(11):947-62 PMID:15334558
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  • Taxis C, et al. (2003) Use of modular substrates demonstrates mechanistic diversity and reveals differences in chaperone requirement of ERAD. J Biol Chem 278(38):35903-13 PMID:12847107
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  • Jarosch E, et al. (2002) Protein dislocation from the ER requires polyubiquitination and the AAA-ATPase Cdc48. Nat Cell Biol 4(2):134-9 PMID:11813000
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  • Taxis C, et al. (2002) ER-golgi traffic is a prerequisite for efficient ER degradation. Mol Biol Cell 13(6):1806-18 PMID:12058050
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  • Plemper RK, et al. (1999) Genetic interactions of Hrd3p and Der3p/Hrd1p with Sec61p suggest a retro-translocation complex mediating protein transport for ER degradation. J Cell Sci 112 ( Pt 22):4123-34 PMID:10547371
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