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2041
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2042
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2043por Watson, Amber K., Hernandez, Belinda F., Kolodny-Goetz, Jenny, Walker, Timothy J., Lamont, Andrea, Imm, Pam, Wandersman, Abraham, Fernandez, Maria E.Enlace del recurso
Publicado 2022
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2044por Siedlik, Jacob A., Watson, Cynthia J., Raine, Morgan A., Cheng, Anne V., Goering, Richard V., Stessman, Holly A. F., Belshan, MichaelEnlace del recurso
Publicado 2022
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2045
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2046
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2047por Maqsood, Zahra, Clark, Joanne C., Martin, Eleyna M., Cheung, Yam Fung Hilaire, Morán, Luis A., Watson, Sean E. T., Pike, Jeremy A., Di, Ying, Poulter, Natalie S., Slater, Alexandre, Lange, Bodo M. H., Nieswandt, Bernhard, Eble, Johannes A., Tomlinson, Mike G., Owen, Dylan M., Stegner, David, Bridge, Lloyd J., Wierling, Christoph, Watson, Steve P.Enlace del recurso
Publicado 2022
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2048por Ingram, John, Cawley, Scott, Jones, Angela, Coulman, Elinor, Gregory, Clive, Pickles, Tim, Kei, Him Shun Hinson, Fletcher, Paul, Curran, Mike, Prior, Trevor, Formosa, Cynthia, Otter, Simon, Rome, Keith, Gow, Peter, Dalbeth, Nicola, Rohan, Maheswaran, Stewart, Sarah, Aiyer, Ashok, Glasser, Sam, Paton, Joanne, Collings, Richard, Marsden, Jonathan, Torgerson, David, Cockayne, Sarah, Rodgers, Sara, Green, Lorraine, Fairhurst, Caroline, Adamson, Joy, Clark, Arabella, Corbacho, Belen, Hewitt, Catherine, Hicks, Kate, Hull, Robin, Keenan, Anne-Maree, Lamb, Sarah, Menz, Hylton, Redmond, Anthony, Richardson, Zoe, Vernon, Wesley, Watson, Judith, Farndon, Lisa, Corbacho, Belen, Cockayne, Sarah, Rodgers, Sara, Green, Lorraine, Fairhurst, Caroline, Adamson, Joy, Clarke, Arabella, Hewitt, Catherine, Hicks, Kate, Hull, Robin, Keenan, Anne-Maree, Lamb, Sarah, McIntosh, Caroline, Menz, Hylton, Redmond, Anthony, Richardson, Zoe, Vernon, Wesley, Watson, Judith, Farndon, Lisa, Torgerson, David, Paton, Joanne, Glasser, Sam, Collings, Richard, Marsden, Jonathan, Mizzi, Stephen, Cutajar, Lucianne, Mizzi, Annabelle, Falzon, Owen, Swaine, Ian, Springett, Kate, Cockayne, Sarah, Rodgers, Sara, Green, Lorraine, Fairhurst, Caroline, Adamson, Joy, Clarke, Arabella, Corbacho, Belen, Hewitt, Catherine, Hicks, Kate, Hull, Robin, Keenan, Anne-Maree, Lamb, Sarah, McIntosh, Caroline, Menz, Hylton, Redmond, Anthony, Richardson, Zoe, Vernon, Wesley, Watson, Judith, Farndon, Lisa, Torgerson, David, Otter, Simon, Rome, Keith, Gow, Peter, Dalbeth, Nicola, Rohan, Maheswaran, Stewart, Sarah, Aiyer, Ashok, Prior, Trevor, Bachand, Andrea, Avison, Ben, Leitch, Jessica, Scott, Jennifer, Hendry, Gordon, Locke, Jackie, McArdle, Carla, Lagan, Katie, McDowell, David, Kaminski, Michelle, Raspovic, Anita, McMahon, Lawrence, Lambert, Katrina, Erbas, Bircan, Mount, Peter, Kerr, Peter, Landorf, Karl, Mamode, Louis, Bowen, Catherine, Burnett, Malcolm, Gates, Lucy, Ashburn, Ann, Cole, Mark, Donovan-Hall, Margaret, Pickering, Ruth, Bader, Dan, Robison, Judy, Kunkel, Dorit, Al Bimani, Saed, Gates, Lucy, Warner, Martin, Bowen, Catherine, Murchie, Jane, Hannigan, Rachel, McArdle, Carla, Ellis, Mairghread, Patience, Aimie, Slater, Sophie, Wallace, Kirsten, Edwards, Katherine, Borthwick, Alan M., McCulloch, Louise, Redmond, Anthony C., Pinedo-Villanueva, Rafael, Arden, Nigel K., Bowen, Catherine J., Siddle, Heidi, Mandl, Peter, Aletaha, Daniel, Vlieland, Thea Vliet, Backhaus, Marina, Cornell, Patricia, D’Agostino, Maria Antonietta, Ellegaard, Karen, Iagnocco, Annamaria, Jakobsen, Bente, Jasinski, Tiina, Kildal, Nina, Lehner, Michaela, Moller, Ingrid, Supp, Gabriela, O’Connor, Philip, Redmond, Anthony, Naredo, Esperanza, Wakefield, RichardEnlace del recurso
Publicado 2017
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2049por Seung, Sebastian“…'With the first-person flavour of James Watson's Double Helix, Connectome gives a sense of the excitement on the cutting edge of neuroscience' New Scientist'Witty and exceptionally clear ... beautifully explained ... the best lay book on brain science I've ever read' Wall Street Journal'Seung is about to revolutionise brain science' The Times'The reader is swept along with his enthusiasm' The New York TimesSebastian Seung is Professor of Computational Neuroscience at MIT and an Investigator of the Howard Hughes Medical Institute. …”
Publicado 2013
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2050por Silva-Ávila , Nancy, Hernández, Francisco Javier, Nájera-Luna, Juan A., Aguirre-Calderón, Carlos E., Domínguez-Gómez, Tilo G.“…Regarding the importance value index, the species with the highest ecological weight was Prosopis articulata S. Watson (33.35 %) for the herbaceous stratum, Cylindropuntia alcahes (F. …”
Publicado 2023
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2051por Satange, Roshan, Chang, Chih-Chun, Li, Long‐Yuan, Lin, Sheng-Hao, Neidle, Stephen, Hou, Ming-Hon“…Here, we use a combination of two well-established anticancer DNA intercalators, actinomycin D (ActD) and echinomycin (Echi), to screen their binding capabilities with DNA duplexes containing different mismatches embedded within Watson-Crick base-pairs. We have found that combining ActD and Echi preferentially stabilised thymine-related T:T mismatches. …”
Publicado 2023
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2052por Rivas, Elena“…However, RNA base pairs do not occur in isolation. The Watson-Crick (WC) base pairs stack together forming helices that constitute the scaffold that facilitates the formation of the non-WC base pairs, and ultimately the complete 3D structure. …”
Publicado 2023
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2053por Funez, Eduardo Irineu Bortoli, da Silva, Alice Tatiane, dos Santos, Letícia Pechnicki, Rodriguez-Añez, Ciro Romelio, de Paula da Silva, Alexandre Augusto, Fermino, Rogério César“…Linear regression, and the Durbin–Watson and Mann–Whitney U tests were used for data analysis in STATA software. …”
Publicado 2023
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2054“…RESULTS: Both factor analysis methods indicated that three-factor models provided a better fit to the data compared to two-factor (anxiety and depression) models for breast cancer patients. Clark and Watson's three factor tripartite and three factor hierarchical models provided the best fit. …”
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2055“…The glycosidic bond of ψ(32) is in the anti configuration and is paired with A(38) in a Watson–Crick geometry, unlike residue 32 in most crystal structures of tRNA. …”
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2056“…The simulations reveal few backbone flips, which do not affect positions of bases and do not indicate a force field imbalance. Non-Watson–Crick base pairs are rigid and mediated by long-residency water molecules while there are several modest cation-binding sites around SRD. …”
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2057“…Due to steric hindrance, pcPNAs are unable to form pcPNA–pcPNA duplexes but can bind to complementary DNA sequences by Watson–Crick pairing via double duplex-invasion complex formation. …”
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2058por Lahoud, Georges, Timoshchuk, Victor, Lebedev, Alexandre, de Vega, Miguel, Salas, Margarita, Arar, Khalil, Hou, Ya-Ming, Gamper, Howard“…The ability to enzymatically generate structure-free single-stranded copies of any nucleic acid without impairing Watson–Crick base pairing to short probes would eliminate this problem and significantly improve the performance of many oligonucleotide-based applications. …”
Publicado 2008
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2059“…Given the fact that junctions between Watson–Crick and A·A duplexes are tolerated, we propose that poly(A) sequence elements and appropriate ligands could be used to reversibly drive transitions in DNA and RNA-based molecular structures by simply diluting/concentrating a sample about the poly(A)-ligand ‘critical concentration’. …”
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2060por Zaliznyak, Tanya, Bonala, Rahda, Attaluri, Sivaprasad, Johnson, Francis, de los Santos, Carlos“…All undamaged residues of the duplex are in anti orientation, forming standard Watson–Crick base-pair alignments. Duplication of proton signals near the damaged site differentiates two enantiomeric duplexes, thus establishing the exocyclic nature of the lesion. …”
Publicado 2009
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