Transferases
"Transferases" 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.
Transferases are enzymes transferring a group, for example, the methyl group or a glycosyl group, from one compound (generally regarded as donor) to another compound (generally regarded as acceptor). The classification is based on the scheme "donor:acceptor group transferase". (Enzyme Nomenclature, 1992) EC 2.
Descriptor ID |
D014166
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MeSH Number(s) |
D08.811.913
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Concept/Terms |
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Below are MeSH descriptors whose meaning is more general than "Transferases".
Below are MeSH descriptors whose meaning is more specific than "Transferases".
This graph shows the total number of publications written about "Transferases" by people in this website by year, and whether "Transferases" was a major or minor topic of these publications.
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Year | Major Topic | Minor Topic | Total |
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1996 | 1 | 2 | 3 | 1997 | 0 | 2 | 2 | 2001 | 0 | 1 | 1 | 2005 | 0 | 1 | 1 | 2006 | 2 | 0 | 2 | 2009 | 2 | 0 | 2 | 2013 | 1 | 0 | 1 | 2017 | 0 | 1 | 1 | 2020 | 0 | 1 | 1 | 2021 | 1 | 0 | 1 | 2022 | 0 | 1 | 1 |
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Below are the most recent publications written about "Transferases" by people in Profiles.
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Tatman PD, Wroblewski TH, Fringuello AR, Scherer SR, Foreman WB, Damek DM, Lillehei KO, Jensen RL, Youssef AS, Ormond DR, Graner MW. Targeting DNA Methyl Transferases with Decitabine in Cultured Meningiomas. World Neurosurg. 2022 06; 162:e99-e119.
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Chen P, Russo BC, Duncan-Lowey JK, Bitar N, Egger KT, Goldberg MB. Topology and Contribution to the Pore Channel Lining of Plasma Membrane-Embedded Shigella flexneri Type 3 Secretion Translocase IpaB. mBio. 2021 12 21; 12(6):e0302121.
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Costa FG, Greenhalgh ED, Brunold TC, Escalante-Semerena JC. Mutational and Functional Analyses of Substrate Binding and Catalysis of the Listeria monocytogenes EutT ATP:Co(I)rrinoid Adenosyltransferase. Biochemistry. 2020 03 17; 59(10):1124-1136.
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Swanson MA, Garcia SM, Spector E, Kronquist K, Creadon-Swindell G, Walter M, Christensen E, Van Hove JLK, Sass JO. d-Glyceric aciduria does not cause nonketotic hyperglycinemia: A historic co-occurrence. Mol Genet Metab. 2017 06; 121(2):80-82.
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Brown MJ, Russo BC, O'Dee DM, Schmitt DM, Nau GJ. The contribution of the glycine cleavage system to the pathogenesis of Francisella tularensis. Microbes Infect. 2014 Apr; 16(4):300-9.
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Breus O, Panasyuk G, Gout IT, Filonenko V, Nemazanyy I. CoA Synthase is phosphorylated on tyrosines in mammalian cells, interacts with and is dephosphorylated by Shp2PTP. Mol Cell Biochem. 2010 Feb; 335(1-2):195-202.
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Breus O, Panasyuk G, Gout IT, Filonenko V, Nemazanyy I. CoA synthase is in complex with p85alphaPI3K and affects PI3K signaling pathway. Biochem Biophys Res Commun. 2009 Aug 07; 385(4):581-5.
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Churchill ME. A new GNAT in bacterial signaling? Structure. 2006 Sep; 14(9):1342-4.
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Nemazanyy I, Panasyuk G, Breus O, Zhyvoloup A, Filonenko V, Gout IT. Identification of a novel CoA synthase isoform, which is primarily expressed in the brain. Biochem Biophys Res Commun. 2006 Mar 24; 341(4):995-1000.
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Van Hove JL, Vande Kerckhove K, Hennermann JB, Mahieu V, Declercq P, Mertens S, De Becker M, Kishnani PS, Jaeken J. Benzoate treatment and the glycine index in nonketotic hyperglycinaemia. J Inherit Metab Dis. 2005; 28(5):651-63.
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