Saccharomyces cerevisiae Proteins
"Saccharomyces cerevisiae Proteins" is a descriptor in the National Library of Medicine's controlled vocabulary thesaurus,
MeSH (Medical Subject Headings). Descriptors are arranged in a hierarchical structure,
which enables searching at various levels of specificity.
Proteins obtained from the species SACCHAROMYCES CEREVISIAE. The function of specific proteins from this organism are the subject of intense scientific interest and have been used to derive basic understanding of the functioning similar proteins in higher eukaryotes.
| Descriptor ID |
D029701
|
| MeSH Number(s) |
D12.776.354.750
|
| Concept/Terms |
|
Below are MeSH descriptors whose meaning is more general than "Saccharomyces cerevisiae Proteins".
Below are MeSH descriptors whose meaning is more specific than "Saccharomyces cerevisiae Proteins".
This graph shows the total number of publications written about "Saccharomyces cerevisiae Proteins" by people in this website by year, and whether "Saccharomyces cerevisiae Proteins" was a major or minor topic of these publications.
To see the data from this visualization as text,
click here.
| Year | Major Topic | Minor Topic | Total |
|---|
| 1996 | 6 | 0 | 6 |
| 1998 | 5 | 0 | 5 |
| 1999 | 9 | 1 | 10 |
| 2000 | 3 | 2 | 5 |
| 2001 | 12 | 4 | 16 |
| 2002 | 11 | 5 | 16 |
| 2003 | 2 | 2 | 4 |
| 2004 | 4 | 6 | 10 |
| 2005 | 3 | 3 | 6 |
| 2006 | 14 | 2 | 16 |
| 2007 | 2 | 4 | 6 |
| 2008 | 8 | 4 | 12 |
| 2009 | 7 | 2 | 9 |
| 2010 | 12 | 3 | 15 |
| 2011 | 6 | 2 | 8 |
| 2012 | 9 | 3 | 12 |
| 2013 | 6 | 3 | 9 |
| 2014 | 9 | 3 | 12 |
| 2015 | 9 | 2 | 11 |
| 2016 | 9 | 0 | 9 |
| 2017 | 7 | 3 | 10 |
| 2018 | 13 | 1 | 14 |
| 2019 | 8 | 1 | 9 |
| 2020 | 3 | 1 | 4 |
| 2021 | 9 | 1 | 10 |
| 2022 | 1 | 1 | 2 |
| 2023 | 2 | 0 | 2 |
| 2024 | 3 | 4 | 7 |
| 2025 | 2 | 0 | 2 |
| 2026 | 1 | 2 | 3 |
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Below are the most recent publications written about "Saccharomyces cerevisiae Proteins" by people in Profiles.
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Emergent 3D genome reorganization and graded gene control from the stepwise assembly of transcriptional condensates. Cell Rep. 2026 Sep 22; 45(9):117888.
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COPI-dependent intra-Golgi recycling at an intermediate stage of cisternal maturation. J Cell Biol. 2026 Jun 01; 225(6).
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Rethinking the Yeast Endomembrane System. Subcell Biochem. 2026; 110:313-333.
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Transcriptome-wide mRNP condensation precedes stress granule formation and excludes new mRNAs. Mol Cell. 2025 Dec 04; 85(23):4393-4409.e11.
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Mei5-Sae3 stabilizes both active and inactive forms of Dmc1 filaments independently of its impact on ATP hydrolysis. Nucleic Acids Res. 2025 Oct 28; 53(20).
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Feedback control of the heat shock response by spatiotemporal regulation of Hsp70. J Cell Biol. 2024 12 02; 223(12).
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Chk2 homolog Mek1 limits exonuclease 1-dependent DNA end resection during meiotic recombination in Saccharomyces cerevisiae. Genetics. 2024 09 04; 228(1).
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Comprehensive analysis of the functional impact of single nucleotide variants of human CHEK2. PLoS Genet. 2024 Aug; 20(8):e1011375.
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Deep-learning-based design of synthetic orthologs of SH3 signaling domains. Cell Syst. 2024 08 21; 15(8):725-737.e7.
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Functional diversity among cardiolipin binding sites on the mitochondrial ADP/ATP carrier. EMBO J. 2024 Jul; 43(14):2979-3008.