Mostrando 2,081 - 2,100 Resultados de 8,819 Para Buscar 'Telonero~', tiempo de consulta: 4.33s Limitar resultados
  1. 2081
    “…BACKGROUND: The present protocol was designed for a systematic review and meta-analysis aimed at determining the association of telomere length with substance use disorders with the exclusion of nicotine addiction, and to identify potential moderators of the effect of telomere length. …”
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  2. 2082
  3. 2083
  4. 2084
    “…Cancer cells maintain their telomeres by either re-activating telomerase or adopting the homologous recombination (HR)-based Alternative Lengthening of Telomere (ALT) pathway. …”
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  5. 2085
  6. 2086
    “…Mechanistically, we show that ATRX affects telomeric DSB repair by promoting cohesion of sister telomeres and that loss of ATRX in ALT cells results in diminished telomere cohesion. …”
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  7. 2087
    “…The underlying mechanism for this protective effect may be that folic acid decreased oxidative stress and thereby prevented telomeric DNA oxidative damage and telomere attrition.…”
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  8. 2088
  9. 2089
    “…Using an unbiased genetic screen, we identified SLX4-interacting protein (SLX4IP) as a regulator of metastatic recurrence and established its relationship in governing telomere maintenance mechanisms (TMMs). Inactivation of SLX4IP suppressed alternative lengthening of telomeres (ALT), coinciding with activation of telomerase. …”
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  10. 2090
    por Li, Chen, Stoma, Svetlana, Lotta, Luca A., Warner, Sophie, Albrecht, Eva, Allione, Alessandra, Arp, Pascal P., Broer, Linda, Buxton, Jessica L., Da Silva Couto Alves, Alexessander, Deelen, Joris, Fedko, Iryna O., Gordon, Scott D., Jiang, Tao, Karlsson, Robert, Kerrison, Nicola, Loe, Taylor K., Mangino, Massimo, Milaneschi, Yuri, Miraglio, Benjamin, Pervjakova, Natalia, Russo, Alessia, Surakka, Ida, van der Spek, Ashley, Verhoeven, Josine E., Amin, Najaf, Beekman, Marian, Blakemore, Alexandra I., Canzian, Federico, Hamby, Stephen E., Hottenga, Jouke-Jan, Jones, Peter D., Jousilahti, Pekka, Mägi, Reedik, Medland, Sarah E., Montgomery, Grant W., Nyholt, Dale R., Perola, Markus, Pietiläinen, Kirsi H., Salomaa, Veikko, Sillanpää, Elina, Suchiman, H. Eka, van Heemst, Diana, Willemsen, Gonneke, Agudo, Antonio, Boeing, Heiner, Boomsma, Dorret I., Chirlaque, Maria-Dolores, Fagherazzi, Guy, Ferrari, Pietro, Franks, Paul, Gieger, Christian, Eriksson, Johan Gunnar, Gunter, Marc, Hägg, Sara, Hovatta, Iiris, Imaz, Liher, Kaprio, Jaakko, Kaaks, Rudolf, Key, Timothy, Krogh, Vittorio, Martin, Nicholas G., Melander, Olle, Metspalu, Andres, Moreno, Concha, Onland-Moret, N. Charlotte, Nilsson, Peter, Ong, Ken K., Overvad, Kim, Palli, Domenico, Panico, Salvatore, Pedersen, Nancy L., Penninx, Brenda W.J. H., Quirós, J. Ramón, Jarvelin, Marjo Riitta, Rodríguez-Barranco, Miguel, Scott, Robert A., Severi, Gianluca, Slagboom, P. Eline, Spector, Tim D., Tjonneland, Anne, Trichopoulou, Antonia, Tumino, Rosario, Uitterlinden, André G., van der Schouw, Yvonne T., van Duijn, Cornelia M., Weiderpass, Elisabete, Denchi, Eros Lazzerini, Matullo, Giuseppe, Butterworth, Adam S., Danesh, John, Samani, Nilesh J., Wareham, Nicholas J., Nelson, Christopher P., Langenberg, Claudia, Codd, Veryan
    Publicado 2020
    “…Leukocyte telomere length (LTL) is a heritable biomarker of genomic aging. …”
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  11. 2091
    “…Several biological findings have been associated with age-related disorders, including increased oxidative stress, inflammation, and telomere shortening. The objective of this study was to compare telomere length among participants with BD at early and late stages and age- and gender-matched healthy controls. …”
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  12. 2092
    “…Telomeres which are present at the ends of eukaryotic chromosomes mediate genome stability and determine cellular lifespan(1). …”
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  13. 2093
    “…Repressor/activator protein 1 (RAP1) is a highly evolutionarily conserved protein found at telomeres. Although yeast Rap1 is a key telomere capping protein preventing non‐homologous end joining (NHEJ) and consequently telomere fusions, its role at mammalian telomeres in vivo is still controversial. …”
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  14. 2094
    “…IMPORTANCE: Leukocyte telomere length (LTL) is a trait associated with risk of cardiovascular disease and cancer, the 2 major disease categories that largely define longevity in the United States. …”
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  15. 2095
    “…Nuclear targets of Ccr4 mainly comprise active full-length transposable elements (TEs) and telomeric and subtelomeric repeats. Moreover, Ccr4-Not foci localize at telomeres in a Piwi-dependent manner, suggesting a functional relationship between these pathways. …”
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  16. 2096
    “…In TGS1 mutant cells, increased hTR assembles with telomerase reverse transcriptase (TERT) protein to yield elevated active telomerase complexes and increased telomerase activity, resulting in telomere elongation in cultured human cells. Our results show that TGS1-mediated hypermethylation of the hTR cap inhibits hTR accumulation, restrains levels of assembled telomerase, and limits telomere elongation.…”
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  17. 2097
    “…Here, we show that fission yeast Aurora B localizes at telomeres during meiosis I and promotes telomere separation independently of the meiotic cohesin Rec8. …”
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  18. 2098
  19. 2099
    “…G-quadruplexes are four-stranded nucleic acid structures involved in multiple cellular pathways including DNA replication and telomere maintenance. Such structures are formed by G-rich DNA sequences typified by telomeric DNA repeats. …”
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  20. 2100
    “…Individuals in free‐living animal populations generally differ substantially in reproductive success, lifespan and other fitness‐related traits, but the molecular mechanisms underlying this variation are poorly understood. Telomere length and dynamics are candidate traits explaining this variation, as long telomeres predict a higher survival probability and telomere loss has been shown to reflect experienced “life stress.” …”
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