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2002 30
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2005 32
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2007 18
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2009 43
2010 51
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Did you mean d a sutton (2,488 results)?
Early Time-Restricted Feeding Improves Insulin Sensitivity, Blood Pressure, and Oxidative Stress Even without Weight Loss in Men with Prediabetes.
Sutton EF, Beyl R, Early KS, Cefalu WT, Ravussin E, Peterson CM. Sutton EF, et al. Cell Metab. 2018 Jun 5;27(6):1212-1221.e3. doi: 10.1016/j.cmet.2018.04.010. Epub 2018 May 10. Cell Metab. 2018. PMID: 29754952 Free PMC article. Clinical Trial.
Men with prediabetes were randomized to eTRF (6-hr feeding period, with dinner before 3 p.m.) or a control schedule (12-hr feeding period) for 5 weeks and later crossed over to the other schedule. eTRF improved insulin sensitivity, beta cell responsiveness, blood pressure, …
Men with prediabetes were randomized to eTRF (6-hr feeding period, with dinner before 3 p.m.) or a control schedule (12-hr feeding pe …
N6-methyladenosine regulates the stability of RNA:DNA hybrids in human cells.
Abakir A, Giles TC, Cristini A, Foster JM, Dai N, Starczak M, Rubio-Roldan A, Li M, Eleftheriou M, Crutchley J, Flatt L, Young L, Gaffney DJ, Denning C, Dalhus B, Emes RD, Gackowski D, Corrêa IR Jr, Garcia-Perez JL, Klungland A, Gromak N, Ruzov A. Abakir A, et al. Nat Genet. 2020 Jan;52(1):48-55. doi: 10.1038/s41588-019-0549-x. Epub 2019 Dec 16. Nat Genet. 2020. PMID: 31844323 Free PMC article.
We demonstrate that m(6)A-containing R-loops accumulate during G(2)/M and are depleted at G(0)/G(1) phases of the cell cycle, and that the m(6)A reader promoting mRNA degradation, YTHDF2 (ref. (7)), interacts with R-loop-enriched loci in dividing cells. Conse …
We demonstrate that m(6)A-containing R-loops accumulate during G(2)/M and are depleted at G(0)/G(1) phases of the cell cycle, …
m(6)A potentiates Sxl alternative pre-mRNA splicing for robust Drosophila sex determination.
Haussmann IU, Bodi Z, Sanchez-Moran E, Mongan NP, Archer N, Fray RG, Soller M. Haussmann IU, et al. Nature. 2016 Dec 8;540(7632):301-304. doi: 10.1038/nature20577. Epub 2016 Nov 30. Nature. 2016. PMID: 27919081
N(6)-methyladenosine (m(6)A) is the most common internal modification of eukaryotic messenger RNA (mRNA) and is decoded by YTH domain proteins. ...We further show that the m(6)A reader protein YT521-B decodes m(6)A in the sex-specifically spliced intron of Sx …
N(6)-methyladenosine (m(6)A) is the most common internal modification of eukaryotic messenger RNA (mRNA) and is decoded by YTH domain …
The rectosigmoid problem.
D'Souza N, de Neree Tot Babberich MPM, Lord A, Shaw A, Abulafi M, Tekkis P, Wiggers T, Brown G. D'Souza N, et al. Surg Oncol. 2018 Sep;27(3):521-525. doi: 10.1016/j.suronc.2018.06.005. Epub 2018 Jun 11. Surg Oncol. 2018. PMID: 30217314 Review.
Two zinc finger proteins with functions in m(6)A writing interact with HAKAI.
Zhang M, Bodi Z, Mackinnon K, Zhong S, Archer N, Mongan NP, Simpson GG, Fray RG. Zhang M, et al. Nat Commun. 2022 Mar 2;13(1):1127. doi: 10.1038/s41467-022-28753-3. Nat Commun. 2022. PMID: 35236848 Free PMC article.
The methyltransferase complex (m(6)A writer), which catalyzes the deposition of N(6)-methyladenosine (m(6)A) in mRNAs, is highly conserved across most eukaryotic organisms, but its components and interactions between them are still far from fully understood. ...Muta …
The methyltransferase complex (m(6)A writer), which catalyzes the deposition of N(6)-methyladenosine (m(6)A) in mRNAs, is high …
Reviews.
[No authors listed] [No authors listed] New Phytol. 1989 Nov;113(3):423-430. doi: 10.1111/j.1469-8137.1989.tb02420.x. New Phytol. 1989. PMID: 33874203 Review.
Electro-enzymology/Coenzyme Regeneration (Biotechnology Monographs, vol. 4). By K. Nakamura, M. Aizawa and O. Miyawaki. Plant Memberanes - Structure, Assembly and Function. Edited by J. ...K. S. Wood and M. J. Way. Tree Breeding: Principles and Strategies. By G. Nan …
Electro-enzymology/Coenzyme Regeneration (Biotechnology Monographs, vol. 4). By K. Nakamura, M. Aizawa and O. Miyawaki. Plant Membera …
The importance of m(6)A topology in chicken embryo mRNA: a precise mapping of m(6)A at the conserved chicken beta-actin zipcode.
Baron F, Zhang M, Archer N, Bellows E, Knight HM, Welham S, Rutland CS, Mongan NP, Hayes CJ, Fray RG, Bodi Z. Baron F, et al. RNA. 2023 Jun;29(6):777-789. doi: 10.1261/rna.079615.123. Epub 2023 Feb 21. RNA. 2023. PMID: 36810234 Free PMC article.
N6-methyladenosine (m(6)A) in mRNA regulates almost every stage in the mRNA life cycle, and the development of methodologies for the high-throughput detection of methylated sites in mRNA using m(6)A-specific methylated RNA immunoprecipitation with next-generation se …
N6-methyladenosine (m(6)A) in mRNA regulates almost every stage in the mRNA life cycle, and the development of methodologies for the …
Clinical and molecular significance of the RNA m(6)A methyltransferase complex in prostate cancer.
Lothion-Roy J, Haigh DB, Harris AE, Metzler VM, Alsaleem M, Toss MS, Kariri Y, Ntekim A, Robinson BD, Khani F, Gudas LJ, Allegrucci C, James VH, Madhusudan S, Mather M, Emes RD, Archer N, Fray RG, Rakha E, Jeyapalan JN, Rutland CS, Mongan NP, Woodcock CL. Lothion-Roy J, et al. Front Genet. 2023 Jan 12;13:1096071. doi: 10.3389/fgene.2022.1096071. eCollection 2022. Front Genet. 2023. PMID: 36733939 Free PMC article.
N(6)-methyladenosine (m(6)A) is the most abundant internal mRNA modification and is dynamically regulated through distinct protein complexes that methylate, demethylate, and/or interpret the m(6)A modification. These proteins, and the m(6)A modification, are …
N(6)-methyladenosine (m(6)A) is the most abundant internal mRNA modification and is dynamically regulated through distinct protein co …
RNA modifications in gene expression control.
Soller M, Fray R. Soller M, et al. Biochim Biophys Acta Gene Regul Mech. 2019 Mar;1862(3):219-221. doi: 10.1016/j.bbagrm.2019.02.010. Biochim Biophys Acta Gene Regul Mech. 2019. PMID: 30832897 No abstract available.
2,106 results