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Table representation of search results timeline featuring number of search results per year.

Year Number of Results
1975 1
1992 3
1993 1
1994 1
1995 3
1996 2
1997 1
1998 3
1999 3
2000 5
2001 3
2003 5
2004 5
2005 6
2006 8
2007 14
2008 11
2009 17
2010 14
2011 16
2012 18
2013 25
2014 26
2015 54
2016 71
2017 81
2018 74
2019 60
2020 63
2021 67
2022 68
2023 71
2024 32

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760 results

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Page 1
m(6)A mRNA methylation controls T cell homeostasis by targeting the IL-7/STAT5/SOCS pathways.
Li HB, Tong J, Zhu S, Batista PJ, Duffy EE, Zhao J, Bailis W, Cao G, Kroehling L, Chen Y, Wang G, Broughton JP, Chen YG, Kluger Y, Simon MD, Chang HY, Yin Z, Flavell RA. Li HB, et al. Nature. 2017 Aug 17;548(7667):338-342. doi: 10.1038/nature23450. Epub 2017 Aug 9. Nature. 2017. PMID: 28792938 Free PMC article.
N(6)-methyladenosine (m(6)A) is the most common and abundant messenger RNA modification, modulated by 'writers', 'erasers' and 'readers' of this mark. In vitro data have shown that m(6)A influences all fundamental aspects of mRNA metabolism, mainly mRNA stability, t …
N(6)-methyladenosine (m(6)A) is the most common and abundant messenger RNA modification, modulated by 'writers', 'erasers' and 'reade …
m(6)A RNA modification controls cell fate transition in mammalian embryonic stem cells.
Batista PJ, Molinie B, Wang J, Qu K, Zhang J, Li L, Bouley DM, Lujan E, Haddad B, Daneshvar K, Carter AC, Flynn RA, Zhou C, Lim KS, Dedon P, Wernig M, Mullen AC, Xing Y, Giallourakis CC, Chang HY. Batista PJ, et al. Cell Stem Cell. 2014 Dec 4;15(6):707-19. doi: 10.1016/j.stem.2014.09.019. Epub 2014 Oct 16. Cell Stem Cell. 2014. PMID: 25456834 Free PMC article.
Here we reveal the evolutionary conservation and function of m(6)A by mapping the m(6)A methylome in mouse and human embryonic stem cells. ...Thus, m(6)A is a mark of transcriptome flexibility required for stem cells to differentiate to specific lineages....
Here we reveal the evolutionary conservation and function of m(6)A by mapping the m(6)A methylome in mouse and human embryonic …
Death after High-Dose rAAV9 Gene Therapy in a Patient with Duchenne's Muscular Dystrophy.
Lek A, Wong B, Keeler A, Blackwood M, Ma K, Huang S, Sylvia K, Batista AR, Artinian R, Kokoski D, Parajuli S, Putra J, Carreon CK, Lidov H, Woodman K, Pajusalu S, Spinazzola JM, Gallagher T, LaRovere J, Balderson D, Black L, Sutton K, Horgan R, Lek M, Flotte T. Lek A, et al. N Engl J Med. 2023 Sep 28;389(13):1203-1210. doi: 10.1056/NEJMoa2307798. N Engl J Med. 2023. PMID: 37754285
Exploring Adipose Tissue Functions.
Jager J, Gilleron J. Jager J, et al. J Vis Exp. 2023 Mar 3;(193). doi: 10.3791/64957. J Vis Exp. 2023. PMID: 37602890
Journal of Visualized Experiments. (165), doi: 10.3791/61814 (2020). Jager, J., Gaudfrin, M., Gilleron, J., Cormont, M., Tanti, J. F. An adipocyte cell culture model to study the impact of protein and micro-RNA modulation on adipocyte function. ...Journal of Visuali …
Journal of Visualized Experiments. (165), doi: 10.3791/61814 (2020). Jager, J., Gaudfrin, M., Gilleron, J., Cormont, M., Tanti …
It's complicated m(6)A-dependent regulation of gene expression in cancer.
Fitzsimmons CM, Batista PJ. Fitzsimmons CM, et al. Biochim Biophys Acta Gene Regul Mech. 2019 Mar;1862(3):382-393. doi: 10.1016/j.bbagrm.2018.09.010. Epub 2018 Oct 5. Biochim Biophys Acta Gene Regul Mech. 2019. PMID: 30296493 Free PMC article. Review.
At the post-transcriptional level, RNA modifications play important roles in the regulation of gene expression. N6-methyladenosine (m(6)A) is the most abundant internal messenger RNA (mRNA) modification and has gained increasing interest in the last few years as a dynamic …
At the post-transcriptional level, RNA modifications play important roles in the regulation of gene expression. N6-methyladenosine (m
Case 241.
Vale TC, de Lima Pinto FC, Pedroso JL, Alves Dos Reis M, Batista IR, Affonseca Bressan R, Magalhães Rivero RL, Mendonça RA, Barsottini OG. Vale TC, et al. Radiology. 2017 Jan;282(1):289-292. doi: 10.1148/radiol.2016151718. Radiology. 2017. PMID: 28005511 No abstract available.
Syndecan-4 is a maestro of gastric cancer cell invasion and communication that underscores poor survival.
Poças J, Marques C, Gomes C, Otake AH, Pinto F, Ferreira M, Silva T, Faria-Ramos I, Matos R, Ribeiro AR, Senra E, Cavadas B, Batista S, Maia J, Macedo JA, Lima L, Afonso LP, Ferreira JA, Santos LL, Polónia A, Osório H, Belting M, Reis CA, Costa-Silva B, Magalhães A. Poças J, et al. Proc Natl Acad Sci U S A. 2023 May 16;120(20):e2214853120. doi: 10.1073/pnas.2214853120. Epub 2023 May 8. Proc Natl Acad Sci U S A. 2023. PMID: 37155874 Free PMC article.
FSH-blocking therapeutic for osteoporosis.
Gera S, Kuo TC, Gumerova AA, Korkmaz F, Sant D, DeMambro V, Sudha K, Padilla A, Prevot G, Munitz J, Teunissen A, van Leent MMT, Post TGJM, Fernandes JC, Netto J, Sultana F, Shelly E, Rojekar S, Kumar P, Cullen L, Chatterjee J, Pallapati A, Miyashita S, Kannangara H, Bhongade M, Sengupta P, Ievleva K, Muradova V, Batista R, Robinson C, Macdonald A, Hutchison S, Saxena M, Meseck M, Caminis J, Iqbal J, New MI, Ryu V, Kim SM, Cao JJ, Zaidi N, Fayad ZA, Lizneva D, Rosen CJ, Yuen T, Zaidi M. Gera S, et al. Elife. 2022 Sep 20;11:e78022. doi: 10.7554/eLife.78022. Elife. 2022. PMID: 36125123 Free PMC article.
Is perioperative COVID-19 really associated with worse surgical outcomes? A nationwide COVIDSurg propensity-matched analysis.
Argandykov D, Dorken-Gallastegi A, El Moheb M, Gebran A, Proaño-Zamudio JA, Bokenkamp M, Renne AM, Nepogodiev D, Bhangu A, Kaafarani HMA; COVIDSurg Collaborative. Argandykov D, et al. J Trauma Acute Care Surg. 2023 Apr 1;94(4):513-524. doi: 10.1097/TA.0000000000003859. Epub 2023 Jan 19. J Trauma Acute Care Surg. 2023. PMID: 36949053 Free PMC article.
Global distributions of age- and sex-related arterial stiffness: systematic review and meta-analysis of 167 studies with 509,743 participants.
Lu Y, Kiechl SJ, Wang J, Xu Q, Kiechl S, Pechlaner R; Global Pulse Wave Velocity Study Group. Lu Y, et al. EBioMedicine. 2023 Jun;92:104619. doi: 10.1016/j.ebiom.2023.104619. Epub 2023 May 23. EBioMedicine. 2023. PMID: 37229905 Free PMC article.
PWV depended on age, sex, and country. Global age-standardised means were 12.5 m/s (95% confidence interval: 12.1-12.8 m/s) for baPWV and 7.45 m/s (95% CI: 7.11-7.79 m/s) for cfPWV. Males had higher global levels than females of 0.77 m/s for baP …
PWV depended on age, sex, and country. Global age-standardised means were 12.5 m/s (95% confidence interval: 12.1-12.8 m/s) fo …
760 results