Pesquisas alternativas:
campos can » campos con (Expandir a Pesquisa), campos carl (Expandir a Pesquisa), campos caro (Expandir a Pesquisa)
comp can » camp can (Expandir a Pesquisa), chimp can (Expandir a Pesquisa), clamp can (Expandir a Pesquisa)
nar c.v » nair c.v (Expandir a Pesquisa)
c.v can » cmv can (Expandir a Pesquisa), c.v caro (Expandir a Pesquisa), crpv can (Expandir a Pesquisa)
can non » dan non (Expandir a Pesquisa), than non (Expandir a Pesquisa)
3 nucl » 3 null (Expandir a Pesquisa)
j nar » j nair (Expandir a Pesquisa), j nare (Expandir a Pesquisa), j narr (Expandir a Pesquisa)
campos can » campos con (Expandir a Pesquisa), campos carl (Expandir a Pesquisa), campos caro (Expandir a Pesquisa)
comp can » camp can (Expandir a Pesquisa), chimp can (Expandir a Pesquisa), clamp can (Expandir a Pesquisa)
nar c.v » nair c.v (Expandir a Pesquisa)
c.v can » cmv can (Expandir a Pesquisa), c.v caro (Expandir a Pesquisa), crpv can (Expandir a Pesquisa)
can non » dan non (Expandir a Pesquisa), than non (Expandir a Pesquisa)
3 nucl » 3 null (Expandir a Pesquisa)
j nar » j nair (Expandir a Pesquisa), j nare (Expandir a Pesquisa), j narr (Expandir a Pesquisa)
1
Por Olorunniji, Femi J., He, Jiuya, Wenwieser, Sandra V.C.T., Boocock, Martin R., Stark, W. Marshall
Publicado em 2008
“... of resolvase variants with ‘activating’ mutations, which can catalyse recombination at binding site I of res...”Publicado em 2008
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2
Por Warner, Matthew J., Bridge, Katherine S., Hewitson, James P., Hodgkinson, Michael R., Heyam, Alex, Massa, Bailey C., Haslam, Jessica C., Chatzifrangkeskou, Maria, Evans, Gareth J.O., Plevin, Michael J., Sharp, Tyson V., Lagos, Dimitris
Publicado no Nucleic Acids Res (2016)
“... of this interaction in primary human dermal lymphatic endothelial cells (HDLECs). Angiopoietin-1 (ANG1) can augment...”Publicado no Nucleic Acids Res (2016)
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3
Por Muller, J., Szklarczyk, D., Julien, P., Letunic, I., Roth, A., Kuhn, M., Powell, S., von Mering, C., Doerks, T., Jensen, L. J., Bork, P.
Publicado em 2010
“... broad functional description for at least 1 966 709 (88%) of them. Users can access the complete set...”Publicado em 2010
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4
Por Sergiev, Petr V., Golovina, Anna Y., Sergeeva, Olga V., Osterman, Ilya A., Nesterchuk, Mikhail V., Bogdanov, Alexey A., Dontsova, Olga A.
Publicado em 2012
“..., RF1 and LepA and RlmM with RdgC. Genome neighbourhood connections revealed several putative...”Publicado em 2012
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5
Por Pellet, J., Tafforeau, L., Lucas-Hourani, M., Navratil, V., Meyniel, L., Achaz, G., Guironnet-Paquet, A., Aublin-Gex, A., Caignard, G., Cassonnet, P., Chaboud, A., Chantier, T., Deloire, A., Demeret, C., Le Breton, M., Neveu, G., Jacotot, L., Vaglio, P., Delmotte, S., Gautier, C., Combet, C., Deleage, G., Favre, M., Tangy, F., Jacob, Y., Andre, P., Lotteau, V., Rabourdin-Combe, C., Vidalain, P. O.
Publicado em 2010
“... ViralORFeome 1.0 (http://www.viralorfeome.com), an open-access database and management system that provides...”Publicado em 2010
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6
Por Renaud, S., Loukinov, D., Abdullaev, Z., Guilleret, I., Bosman, F. T., Lobanenkov, V., Benhattar, J.
Publicado em 2007
“... that methylation of the hTERT promoter is necessary for its transcription and that CTCF can repress hTERT...”Publicado em 2007
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7
Por Amato, Nicholas J., Zhai, Qianqian, Navarro, Diana C., Niedernhofer, Laura J., Wang, Yinsheng
Publicado no Nucleic Acids Res (2015)
“... to the development of cancer and likely other human diseases. Hydroxyl radical attack on the C1′, C3′ and C4′ of 2...”Publicado no Nucleic Acids Res (2015)
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8
Por Desai, Tasha A., Rodionov, Dmitry A., Gelfand, Mikhail S., Alm, Eric J., Rao, Christopher V.
Publicado em 2009
“... synthetic biology perspective, if the DNA-binding specificity of these proteins can be changed...”Publicado em 2009
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9
Por Hsiao, Chiaolong, Lenz, Timothy K., Peters, Jessica K., Fang, Po-Yu, Schneider, Dana M., Anderson, Eric J., Preeprem, Thanawadee, Bowman, Jessica C., O'Neill, Eric B., Lie, Lively, Athavale, Shreyas S., Gossett, J. Jared, Trippe, Catherine, Murray, Jason, Petrov, Anton S., Wartell, Roger M., Harvey, Stephen C., Hud, Nicholas V., Dean Williams, Loren
Publicado em 2013
“... that ancestral rRNA can: (i) assume canonical 23S rRNA-like secondary structure, (ii) assume canonical tertiary...”Publicado em 2013
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10
Por Clarke, Daniel J B, Kuleshov, Maxim V, Schilder, Brian M, Torre, Denis, Duffy, Mary E, Keenan, Alexandra B, Lachmann, Alexander, Feldmann, Axel S, Gundersen, Gregory W, Silverstein, Moshe C, Wang, Zichen, Ma’ayan, Avi
Publicado no Nucleic Acids Res (2018)
“...While gene expression data at the mRNA level can be globally and accurately measured, profiling...”Publicado no Nucleic Acids Res (2018)
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11
Por Northam, Matthew R., Moore, Elizabeth A., Mertz, Tony M., Binz, Sara K., Stith, Carrie M., Stepchenkova, Elena I., Wendt, Kathern L., Burgers, Peter M. J., Shcherbakova, Polina V.
Publicado em 2014
“... repeated sequences capable of forming hairpin structures. The Rev1 deoxycytidyl transferase can take over...”Publicado em 2014
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12
Por Aiyer, Sriram, Swapna, G.V.T., Malani, Nirav, Aramini, James M., Schneider, William M., Plumb, Matthew R., Ghanem, Mustafa, Larue, Ross C., Sharma, Amit, Studamire, Barbara, Kvaratskhelia, Mamuka, Bushman, Frederic D., Montelione, Gaetano T., Roth, Monica J.
Publicado em 2014
“... that used by histones and RNA polymerase II. Viruses bearing MLV IN C-terminal truncations can provide new...”Publicado em 2014
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13
Por Ramirez, Bianca L., Sharma, Prachi, Eisenhart, Reed J., Gagliardi, Laura, Lu, Connie C.
Publicado no Chem Sci (2019)
“...) and Lu{((i)Pr(2)PCH(2)NAr)(3)tacn} (2), respectively. Reaction of Ni(COD)(2) (where COD is 1...”Publicado no Chem Sci (2019)
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14
Por Aurrecoechea, Cristina, Barreto, Ana, Brestelli, John, Brunk, Brian P., Caler, Elisabet V., Fischer, Steve, Gajria, Bindu, Gao, Xin, Gingle, Alan, Grant, Greg, Harb, Omar S., Heiges, Mark, Iodice, John, Kissinger, Jessica C., Kraemer, Eileen T., Li, Wei, Nayak, Vishal, Pennington, Cary, Pinney, Deborah F., Pitts, Brian, Roos, David S., Srinivasamoorthy, Ganesh, Stoeckert, Christian J., Treatman, Charles, Wang, Haiming
Publicado em 2011
“...AmoebaDB (http://AmoebaDB.org) and MicrosporidiaDB (http://MicrosporidiaDB.org) are new functional...”Publicado em 2011
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15
Por Köhler, Sebastian, Doelken, Sandra C., Mungall, Christopher J., Bauer, Sebastian, Firth, Helen V., Bailleul-Forestier, Isabelle, Black, Graeme C. M., Brown, Danielle L., Brudno, Michael, Campbell, Jennifer, FitzPatrick, David R., Eppig, Janan T., Jackson, Andrew P., Freson, Kathleen, Girdea, Marta, Helbig, Ingo, Hurst, Jane A., Jähn, Johanna, Jackson, Laird G., Kelly, Anne M., Ledbetter, David H., Mansour, Sahar, Martin, Christa L., Moss, Celia, Mumford, Andrew, Ouwehand, Willem H., Park, Soo-Mi, Riggs, Erin Rooney, Scott, Richard H., Sisodiya, Sanjay, Vooren, Steven Van, Wapner, Ronald J., Wilkie, Andrew O. M., Wright, Caroline F., Vulto-van Silfhout, Anneke T., de Leeuw, Nicole, de Vries, Bert B. A., Washingthon, Nicole L., Smith, Cynthia L., Westerfield, Monte, Schofield, Paul, Ruef, Barbara J., Gkoutos, Georgios V., Haendel, Melissa, Smedley, Damian, Lewis, Suzanna E., Robinson, Peter N.
Publicado em 2014
“.... All data and documentation on the HPO project can be found online....”Publicado em 2014
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16
Por Keshava Prasad, T. S., Goel, Renu, Kandasamy, Kumaran, Keerthikumar, Shivakumar, Kumar, Sameer, Mathivanan, Suresh, Telikicherla, Deepthi, Raju, Rajesh, Shafreen, Beema, Venugopal, Abhilash, Balakrishnan, Lavanya, Marimuthu, Arivusudar, Banerjee, Sutopa, Somanathan, Devi S., Sebastian, Aimy, Rani, Sandhya, Ray, Somak, Harrys Kishore, C. J., Kanth, Sashi, Ahmed, Mukhtar, Kashyap, Manoj K., Mohmood, Riaz, Ramachandra, Y. L., Krishna, V., Rahiman, B. Abdul, Mohan, Sujatha, Ranganathan, Prathibha, Ramabadran, Subhashri, Chaerkady, Raghothama, Pandey, Akhilesh
Publicado em 2009
“... of new features in HPRD. These include PhosphoMotif Finder, which allows users to find the presence...”Publicado em 2009
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17
Por te Velthuis, Aartjan J. W., Arnold, Jamie J., Cameron, Craig E., van den Worm, Sjoerd H. E., Snijder, Eric J.
Publicado em 2010
“... domain in the C-terminal part of nonstructural protein 12 (nsp12), one of 16 replicase subunits. However...”Publicado em 2010
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18
Por Marchler-Bauer, Aron, Lu, Shennan, Anderson, John B., Chitsaz, Farideh, Derbyshire, Myra K., DeWeese-Scott, Carol, Fong, Jessica H., Geer, Lewis Y., Geer, Renata C., Gonzales, Noreen R., Gwadz, Marc, Hurwitz, David I., Jackson, John D., Ke, Zhaoxi, Lanczycki, Christopher J., Lu, Fu, Marchler, Gabriele H., Mullokandov, Mikhail, Omelchenko, Marina V., Robertson, Cynthia L., Song, James S., Thanki, Narmada, Yamashita, Roxanne A., Zhang, Dachuan, Zhang, Naigong, Zheng, Chanjuan, Bryant, Stephen H.
Publicado em 2011
“... manually curated domain models that make use of protein 3D structure to refine domain models and provide...”Publicado em 2011
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19
“...Guanine-rich DNA sequences can form G-quadruplexes stabilized by stacked G–G–G–G tetrads...”
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20
Por Hjelm, Brooke E, Rollins, Brandi, Morgan, Ling, Sequeira, Adolfo, Mamdani, Firoza, Pereira, Filipe, Damas, Joana, Webb, Michelle G, Weber, Matthieu D, Schatzberg, Alan F, Barchas, Jack D, Lee, Francis S, Akil, Huda, Watson, Stanley J, Myers, Richard M, Chao, Elizabeth C, Kimonis, Virginia, Thompson, Peter M, Bunney, William E, Vawter, Marquis P
Publicado no Nucleic Acids Res (2019)
“... than mRNA splices. Analyses of 93 samples from postmortem brain and blood found (i) the 4977 bp ‘common...”Publicado no Nucleic Acids Res (2019)
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