AboutBlogDownloadExploreHelpGet Data
Email Us Mastodon BlueSky Facebook LinkedIn YouTube
Saccharomyces Genome Database
  • Saccharomyces Genome Database
    Saccharomyces Genome Database
  • Menu
  • Analyze
    • Gene Lists
    • BLAST
    • Fungal BLAST
    • GO Term Finder
    • GO Slim Mapper
    • Pattern Matching
    • Design Primers
    • Restriction Site Mapper
  • Sequence
    • Download
    • Genome Browser
    • BLAST
    • Fungal BLAST
    • Gene/Sequence Resources
    • Reference Genome
      • Download Genome
      • Genome Snapshot
      • Chromosome History
      • Systematic Sequencing Table
      • Original Sequence Papers
    • Strains and Species
      • Variant Viewer
      • Align Strain Sequences
    • Resources
      • UniProtKB
      • InterPro (EBI)
      • HomoloGene (NCBI)
      • YGOB (Trinity College)
      • AlphaFold
  • Function
    • Gene Ontology
      • GO Term Finder
      • GO Slim Mapper
      • GO Slim Mapping File
    • Expression
    • Biochemical Pathways
    • Phenotypes
      • Browse All Phenotypes
    • Interactions
    • YeastGFP
    • Resources
      • GO Consortium
      • BioGRID (U. Toronto)
  • Literature
    • Full-text Search
    • New Yeast Papers
    • YeastBook
    • Resources
      • PubMed (NCBI)
      • PubMed Central (NCBI)
      • Google Scholar
  • Community
    • Community Forum
    • Colleague Information
      • Find a Colleague
      • Add or Update Info
      • Find a Yeast Lab
    • Education
    • Meetings
    • Nomenclature
      • Submit a Gene Registration
      • Gene Registry
      • Nomenclature Conventions
    • Methods and Reagents
      • Strains
    • Historical Data
      • Physical & Genetic Maps
      • Genetic Maps
      • Genetic Loci
      • ORFMap Chromosomes
      • Sequence
    • Submit Data
    • API
  • Info & Downloads
    • About
    • Blog
    • Downloads
    • Site Map
    • Help
  • Author: Walther TC
  • References

Author: Walther TC


References 36 references


No citations for this author.

Download References (.nbib)

  • Arlt H, et al. (2022) Seipin forms a flexible cage at lipid droplet formation sites. Nat Struct Mol Biol 29(3):194-202 PMID:35210614
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Becuwe M, et al. (2020) FIT2 is an acyl-coenzyme A diphosphatase crucial for endoplasmic reticulum homeostasis. J Cell Biol 219(10) PMID:32915949
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Christiano R, et al. (2020) A Systematic Protein Turnover Map for Decoding Protein Degradation. Cell Rep 33(6):108378 PMID:33176155
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Fanning S, et al. (2019) Lipidomic Analysis of α-Synuclein Neurotoxicity Identifies Stearoyl CoA Desaturase as a Target for Parkinson Treatment. Mol Cell 73(5):1001-1014.e8 PMID:30527540
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Fröhlich F, et al. (2016) Proteomic and phosphoproteomic analyses of yeast reveal the global cellular response to sphingolipid depletion. Proteomics 16(21):2759-2763 PMID:27717283
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Olson DK, et al. (2016) Taming the sphinx: Mechanisms of cellular sphingolipid homeostasis. Biochim Biophys Acta 1861(8 Pt B):784-792 PMID:26747648
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Fröhlich F, et al. (2015) The GARP complex is required for cellular sphingolipid homeostasis. Elife 4 PMID:26357016
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Olson DK, et al. (2015) Rom2-dependent phosphorylation of Elo2 controls the abundance of very long-chain fatty acids. J Biol Chem 290(7):4238-47 PMID:25519905
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Shibuya A, et al. (2015) The Erv41-Erv46 complex serves as a retrograde receptor to retrieve escaped ER proteins. J Cell Biol 208(2):197-209 PMID:25583996
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Christiano R, et al. (2014) Global proteome turnover analyses of the Yeasts S. cerevisiae and S. pombe. Cell Rep 9(5):1959-1965 PMID:25466257
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Currie E, et al. (2014) High confidence proteomic analysis of yeast LDs identifies additional droplet proteins and reveals connections to dolichol synthesis and sterol acetylation. J Lipid Res 55(7):1465-77 PMID:24868093
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Fröhlich F, et al. (2014) A role for eisosomes in maintenance of plasma membrane phosphoinositide levels. Mol Biol Cell 25(18):2797-806 PMID:25057013
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Harrison MS, et al. (2014) A mechanism for retromer endosomal coat complex assembly with cargo. Proc Natl Acad Sci U S A 111(1):267-72 PMID:24344282
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Payne F, et al. (2014) Mutations disrupting the Kennedy phosphatidylcholine pathway in humans with congenital lipodystrophy and fatty liver disease. Proc Natl Acad Sci U S A 111(24):8901-6 PMID:24889630
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Fröhlich F, et al. (2013) Native SILAC: metabolic labeling of proteins in prototroph microorganisms based on lysine synthesis regulation. Mol Cell Proteomics 12(7):1995-2005 PMID:23592334
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Henriksen P, et al. (2012) Proteome-wide analysis of lysine acetylation suggests its broad regulatory scope in Saccharomyces cerevisiae. Mol Cell Proteomics 11(11):1510-22 PMID:22865919
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Moreira KE, et al. (2012) Seg1 controls eisosome assembly and shape. J Cell Biol 198(3):405-20 PMID:22869600
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Ziółkowska NE, et al. (2012) Organized living: formation mechanisms and functions of plasma membrane domains in yeast. Trends Cell Biol 22(3):151-8 PMID:22245053
    • SGD Paper
    • DOI full text
    • PubMed
  • Fei W, et al. (2011) A role for phosphatidic acid in the formation of "supersized" lipid droplets. PLoS Genet 7(7):e1002201 PMID:21829381
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Karotki L, et al. (2011) Eisosome proteins assemble into a membrane scaffold. J Cell Biol 195(5):889-902 PMID:22123866
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Ziółkowska NE, et al. (2011) Eisosome-driven plasma membrane organization is mediated by BAR domains. Nat Struct Mol Biol 18(7):854-6 PMID:21685922
    • SGD Paper
    • DOI full text
    • PubMed
  • Aguilar PS, et al. (2010) Structure of sterol aliphatic chains affects yeast cell shape and cell fusion during mating. Proc Natl Acad Sci U S A 107(9):4170-5 PMID:20150508
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Aguilar PS, et al. (2010) A plasma-membrane E-MAP reveals links of the eisosome with sphingolipid metabolism and endosomal trafficking. Nat Struct Mol Biol 17(7):901-8 PMID:20526336
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Walther TC (2010) Keeping sphingolipid levels nORMal. Proc Natl Acad Sci U S A 107(13):5701-2 PMID:20304791
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Walther TC, et al. (2010) Yeast expression proteomics by high-resolution mass spectrometry. Methods Enzymol 470:259-80 PMID:20946814
    • SGD Paper
    • DOI full text
    • PubMed
  • Berchtold D and Walther TC (2009) TORC2 plasma membrane localization is essential for cell viability and restricted to a distinct domain. Mol Biol Cell 20(5):1565-75 PMID:19144819
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Choudhary C, et al. (2009) Lysine acetylation targets protein complexes and co-regulates major cellular functions. Science 325(5942):834-40 PMID:19608861
    • SGD Paper
    • DOI full text
    • PubMed
  • Fröhlich F, et al. (2009) A genome-wide screen for genes affecting eisosomes reveals Nce102 function in sphingolipid signaling. J Cell Biol 185(7):1227-42 PMID:19564405
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Moreira KE, et al. (2009) Pil1 controls eisosome biogenesis. Mol Biol Cell 20(3):809-18 PMID:19037108
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Soufi B, et al. (2009) Global analysis of the yeast osmotic stress response by quantitative proteomics. Mol Biosyst 5(11):1337-46 PMID:19823750
    • SGD Paper
    • DOI full text
    • PubMed
  • Wang H, et al. (2009) A complex-based reconstruction of the Saccharomyces cerevisiae interactome. Mol Cell Proteomics 8(6):1361-81 PMID:19176519
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Matic I, et al. (2008) Phosphorylation of SUMO-1 occurs in vivo and is conserved through evolution. J Proteome Res 7(9):4050-7 PMID:18707152
    • SGD Paper
    • DOI full text
    • PubMed
  • de Godoy LM, et al. (2008) Comprehensive mass-spectrometry-based proteome quantification of haploid versus diploid yeast. Nature 455(7217):1251-4 PMID:18820680
    • SGD Paper
    • DOI full text
    • PubMed
  • Walther TC, et al. (2007) Pkh-kinases control eisosome assembly and organization. EMBO J 26(24):4946-55 PMID:18034155
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Walther TC, et al. (2006) Eisosomes mark static sites of endocytosis. Nature 439(7079):998-1003 PMID:16496001
    • SGD Paper
    • DOI full text
    • PubMed
  • Hetzer M, et al. (2001) Distinct AAA-ATPase p97 complexes function in discrete steps of nuclear assembly. Nat Cell Biol 3(12):1086-91 PMID:11781570
    • SGD Paper
    • DOI full text
    • PubMed
  • SGD
  • About
  • Blog
  • Help
  • Privacy Policy
  • Creative Commons License
© Stanford University, Stanford, CA 94305.
Back to Top