Adenosine Triphosphate
"Adenosine Triphosphate" 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.
An adenine nucleotide containing three phosphate groups esterified to the sugar moiety. In addition to its crucial roles in metabolism adenosine triphosphate is a neurotransmitter.
Descriptor ID |
D000255
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MeSH Number(s) |
D03.633.100.759.646.138.236 D13.695.667.138.236 D13.695.827.068.236
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Concept/Terms |
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Below are MeSH descriptors whose meaning is more general than "Adenosine Triphosphate".
Below are MeSH descriptors whose meaning is more specific than "Adenosine Triphosphate".
This graph shows the total number of publications written about "Adenosine Triphosphate" by people in this website by year, and whether "Adenosine Triphosphate" 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 |
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1992 | 1 | 4 | 5 | 1993 | 2 | 5 | 7 | 1994 | 4 | 2 | 6 | 1995 | 2 | 1 | 3 | 1996 | 1 | 0 | 1 | 1997 | 2 | 8 | 10 | 1998 | 0 | 6 | 6 | 1999 | 1 | 6 | 7 | 2000 | 2 | 3 | 5 | 2001 | 1 | 3 | 4 | 2002 | 4 | 6 | 10 | 2003 | 2 | 4 | 6 | 2004 | 1 | 6 | 7 | 2005 | 5 | 7 | 12 | 2006 | 3 | 5 | 8 | 2007 | 1 | 8 | 9 | 2008 | 2 | 8 | 10 | 2009 | 4 | 4 | 8 | 2010 | 6 | 5 | 11 | 2011 | 2 | 6 | 8 | 2012 | 2 | 5 | 7 | 2013 | 1 | 5 | 6 | 2014 | 1 | 5 | 6 | 2015 | 3 | 7 | 10 | 2016 | 2 | 8 | 10 | 2017 | 0 | 4 | 4 | 2018 | 3 | 6 | 9 | 2019 | 0 | 5 | 5 | 2020 | 1 | 3 | 4 | 2021 | 2 | 2 | 4 | 2022 | 0 | 4 | 4 |
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Below are the most recent publications written about "Adenosine Triphosphate" by people in Profiles.
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Nahar A, Sokolova V, Sekaran S, Orth JD, Park S. Assembly checkpoint of the proteasome regulatory particle is activated by coordinated actions of proteasomal ATPase chaperones. Cell Rep. 2022 Jun 07; 39(10):110918.
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Kitzenberg DA, Lee JS, Mills KB, Kim JS, Liu L, Vázquez-Torres A, Colgan SP, Kao DJ. Adenosine Awakens Metabolism to Enhance Growth-Independent Killing of Tolerant and Persister Bacteria across Multiple Classes of Antibiotics. mBio. 2022 06 28; 13(3):e0048022.
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Singanayagam A, Footitt J, Marczynski M, Radicioni G, Cross MT, Finney LJ, Trujillo-Torralbo MB, Calderazzo M, Zhu J, Aniscenko J, Clarke TB, Molyneaux PL, Bartlett NW, Moffatt MF, Cookson WO, Wedzicha J, Evans CM, Boucher RC, Kesimer M, Lieleg O, Mallia P, Johnston SL. Airway mucins promote immunopathology in virus-exacerbated chronic obstructive pulmonary disease. J Clin Invest. 2022 04 15; 132(8).
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Kinnamon S, Finger T. The Role of ATP and Purinergic Receptors in Taste Signaling. Handb Exp Pharmacol. 2022; 275:91-107.
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Costa FG, Villa EA, Escalante-Semerena JC. A method for the efficient adenosylation of corrinoids. Methods Enzymol. 2022; 668:87-108.
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Giddings EL, Champagne DP, Wu MH, Laffin JM, Thornton TM, Valenca-Pereira F, Culp-Hill R, Fortner KA, Romero N, East J, Cao P, Arias-Pulido H, Sidhu KS, Silverstrim B, Kam Y, Kelley S, Pereira M, Bates SE, Bunn JY, Fiering SN, Matthews DE, Robey RW, Stich D, D'Alessandro A, Rincon M. Mitochondrial ATP fuels ABC transporter-mediated drug efflux in cancer chemoresistance. Nat Commun. 2021 05 14; 12(1):2804.
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Ambruso SL, Gil HW, Fox B, Park B, Altmann C, Bagchi RA, Baker PR, Reisz JA, Faubel S. Lung metabolomics after ischemic acute kidney injury reveals increased oxidative stress, altered energy production, and ATP depletion. Am J Physiol Lung Cell Mol Physiol. 2021 07 01; 321(1):L50-L64.
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Tomko EJ, Luyties O, Rimel JK, Tsai CL, Fuss JO, Fishburn J, Hahn S, Tsutakawa SE, Taatjes DJ, Galburt EA. The Role of XPB/Ssl2 dsDNA Translocase Processivity in Transcription Start-site Scanning. J Mol Biol. 2021 07 09; 433(14):166813.
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Samson JM, Ravindran Menon D, Vaddi PK, Kalani Williams N, Domenico J, Zhai Z, Backos DS, Fujita M. Computational Modeling of NLRP3 Identifies Enhanced ATP Binding and Multimerization in Cryopyrin-Associated Periodic Syndromes. Front Immunol. 2020; 11:584364.
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Bruni GN, Kralj JM. Membrane voltage dysregulation driven by metabolic dysfunction underlies bactericidal activity of aminoglycosides. Elife. 2020 08 04; 9.
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