Pesquisas alternativas:
soils company » skills company (Expandir a Pesquisa), soils commonly (Expandir a Pesquisa), soils compared (Expandir a Pesquisa)
company car » company case (Expandir a Pesquisa), company a (Expandir a Pesquisa), company carlos (Expandir a Pesquisa)
romero da » romero a (Expandir a Pesquisa), romero de (Expandir a Pesquisa), romero d (Expandir a Pesquisa)
car non » ear non (Expandir a Pesquisa), war non (Expandir a Pesquisa), clear non (Expandir a Pesquisa)
da net » da neto (Expandir a Pesquisa), da new (Expandir a Pesquisa), da nee (Expandir a Pesquisa)
atp i » atp iv (Expandir a Pesquisa), atp _ (Expandir a Pesquisa), atp a (Expandir a Pesquisa)
i can » _ can (Expandir a Pesquisa)
soils company » skills company (Expandir a Pesquisa), soils commonly (Expandir a Pesquisa), soils compared (Expandir a Pesquisa)
company car » company case (Expandir a Pesquisa), company a (Expandir a Pesquisa), company carlos (Expandir a Pesquisa)
romero da » romero a (Expandir a Pesquisa), romero de (Expandir a Pesquisa), romero d (Expandir a Pesquisa)
car non » ear non (Expandir a Pesquisa), war non (Expandir a Pesquisa), clear non (Expandir a Pesquisa)
da net » da neto (Expandir a Pesquisa), da new (Expandir a Pesquisa), da nee (Expandir a Pesquisa)
atp i » atp iv (Expandir a Pesquisa), atp _ (Expandir a Pesquisa), atp a (Expandir a Pesquisa)
i can » _ can (Expandir a Pesquisa)
1
Por L. Adamczyk, J.R. Adams, J.K. Adkins, G. Agakishiev, M.M. Aggarwal, Z. Ahammed, N.N. Ajitanand, I. Alekseev, D.M. Anderson, R. Aoyama, A. Aparin, D. Arkhipkin, E.C. Aschenauer, M.U. Ashraf, A. Attri, G.S. Averichev, X. Bai, V. Bairathi, K. Barish, A. Behera, R. Bellwied, A. Bhasin, A.K. Bhati, P. Bhattarai, J. Bielcik, J. Bielcikova, L.C. Bland, I.G. Bordyuzhin, J. Bouchet, J.D. Brandenburg, A.V. Brandin, D. Brown, I. Bunzarov, J. Butterworth, H. Caines, M. Calderón de la Barca Sánchez, J.M. Campbell, D. Cebra, I. Chakaberia, P. Chaloupka, Z. Chang, N. Chankova-Bunzarova, A. Chatterjee, S. Chattopadhyay, J.H. Chen, X. Chen, X. Chen, J. Cheng, M. Cherney, W. Christie, G. Contin, H.J. Crawford, S. Das, L.C. De Silva, R.R. Debbe, T.G. Dedovich, J. Deng, A.A. Derevschikov, L. Didenko, C. Dilks, X. Dong, J.L. Drachenberg, J.E. Draper, L.E. Dunkelberger, J.C. Dunlop, L.G. Efimov, N. Elsey, J. Engelage, G. Eppley, R. Esha, S. Esumi, O. Evdokimov, J. Ewigleben, O. Eyser, R. Fatemi, S. Fazio, P. Federic, P. Federicova, J. Fedorisin, Z. Feng, P. Filip, E. Finch, Y. Fisyak, C.E. Flores, J. Fujita, L. Fulek, C.A. Gagliardi, D. Garand, F. Geurts, A. Gibson, M. Girard, D. Grosnick, D.S. Gunarathne, Y. Guo, S. Gupta, A. Gupta, W. Guryn, A.I. Hamad, A. Hamed, A. Harlenderova, J.W. Harris, L. He, S. Heppelmann, S. Heppelmann, A. Hirsch, G.W. Hoffmann, S. Horvat, X. Huang, H.Z. Huang, T. Huang, B. Huang, T.J. Humanic, P. Huo, G. Igo, W.W. Jacobs, A. Jentsch, J. Jia, K. Jiang, S. Jowzaee, E.G. Judd, S. Kabana, D. Kalinkin, K. Kang, D. Kapukchyan, K. Kauder, H.W. Ke, D. Keane, A. Kechechyan, Z. Khan, D.P. Kikoła, C. Kim, I. Kisel, A. Kisiel, L. Kochenda, M. Kocmanek, T. Kollegger, L.K. Kosarzewski, A.F. Kraishan, L. Krauth, P. Kravtsov, K. Krueger, N. Kulathunga, L. Kumar, J. Kvapil, J.H. Kwasizur, R. Lacey, J.M. Landgraf, K.D. Landry, J. Lauret, A. Lebedev, R. Lednicky, J.H. Lee, C. Li, W. Li, Y. Li, X. Li, J. Lidrych, T. Lin, M.A. Lisa, P. Liu, F. Liu, H. Liu, Y. Liu, T. Ljubicic, W.J. Llope, M. Lomnitz, R.S. Longacre, X. Luo, S. Luo, G.L. Ma, L. Ma, Y.G. Ma, R. Ma, N. Magdy, R. Majka, D. Mallick, S. Margetis, C. Markert, H.S. Matis, K. Meehan, J.C. Mei, Z.W. Miller, N.G. Minaev, S. Mioduszewski, D. Mishra, S. Mizuno, B. Mohanty, M.M. Mondal, D.A. Morozov, M.K. Mustafa, Md. Nasim, T.K. Nayak, J.M. Nelson, M. Nie, G. Nigmatkulov, T. Niida, L.V. Nogach, T. Nonaka, S.B. Nurushev, G. Odyniec, A. Ogawa, K. Oh, V.A. Okorokov, D. Olvitt, Jr., B.S. Page, R. Pak, Y. Pandit, Y. Panebratsev, B. Pawlik, H. Pei, C. Perkins, P. Pile, J. Pluta, K. Poniatowska, J. Porter, M. Posik, N.K. Pruthi, M. Przybycien, J. Putschke, H. Qiu, A. Quintero, S. Ramachandran, R.L. Ray, R. Reed, M.J. Rehbein, H.G. Ritter, J.B. Roberts, O.V. Rogachevskiy, J.L. Romero, J.D. Roth, L. Ruan, J. Rusnak, O. Rusnakova, N.R. Sahoo, P.K. Sahu, S. Salur, J. Sandweiss, A. Sarkar, M. Saur, J. Schambach, A.M. Schmah, W.B. Schmidke, N. Schmitz, B.R. Schweid, J. Seger, M. Sergeeva, R. Seto, P. Seyboth, N. Shah, E. Shahaliev, P.V. Shanmuganathan, M. Shao, M.K. Sharma, A. Sharma, W.Q. Shen, Z. Shi, S.S. Shi, Q.Y. Shou, E.P. Sichtermann, R. Sikora, M. Simko, S. Singha, M.J. Skoby, D. Smirnov, N. Smirnov, W. Solyst, L. Song, P. Sorensen, H.M. Spinka, B. Srivastava, T.D.S. Stanislaus, M. Strikhanov, B. Stringfellow, T. Sugiura, M. Sumbera, B. Summa, X.M. Sun, Y. Sun, X. Sun, B. Surrow, D.N. Svirida, A.H. Tang, Z. Tang, A. Taranenko, T. Tarnowsky, A. Tawfik, J. Thäder, J.H. Thomas, A.R. Timmins, D. Tlusty, T. Todoroki, M. Tokarev, S. Trentalange, R.E. Tribble, P. Tribedy, S.K. Tripathy, B.A. Trzeciak, O.D. Tsai, T. Ullrich, D.G. Underwood, I. Upsal, G. Van Buren, G. van Nieuwenhuizen, A.N. Vasiliev, F. Videbæk, S. Vokal, S.A. Voloshin, A. Vossen, F. Wang, Y. Wang, G. Wang, Y. Wang, J.C. Webb, G. Webb, L. Wen, G.D. Westfall, H. Wieman, S.W. Wissink, R. Witt, Y. Wu, Z.G. Xiao, G. Xie, W. Xie, Z. Xu, N. Xu, Y.F. Xu, Q.H. Xu, J. Xu, Q. Yang, C. Yang, S. Yang, Y. Yang, Z. Ye, Z. Ye, L. Yi, K. Yip, I.-K. Yoo, N. Yu, H. Zbroszczyk, W. Zha, X.P. Zhang, S. Zhang, J.B. Zhang, J. Zhang, Z. Zhang, S. Zhang, J. Zhang, Y. Zhang, J. Zhao, C. Zhong, L. Zhou, C. Zhou, Z. Zhu, X. Zhu, M. Zyzak
Publicado em 2018-10-01
“... to the correlation length of the hot and dense matter created in relativistic heavy-ion collisions and can be used...”Publicado em 2018-10-01
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2
Por Sannino, Giuseppina, Marchetto, Aruna, Ranft, Andreas, Jabar, Susanne, Zacherl, Constanze, Alba-Rubio, Rebeca, Stein, Stefanie, Wehweck, Fabienne S., Kiran, Merve M., Hölting, Tilman L.B., Musa, Julian, Romero-Pérez, Laura, Cidre-Aranaz, Florencia, Knott, Maximilian M.L., Li, Jing, Jürgens, Heribert, Sastre, Ana, Alonso, Javier, Da Silveira, Willian, Hardiman, Gary, Gerke, Julia S., Orth, Martin F., Hartmann, Wolfgang, Kirchner, Thomas, Ohmura, Shunya, Dirksen, Uta, Grünewald, Thomas G.P.
Publicado no EBioMedicine (2019)
“... of Health (U01-DA045300). The laboratory of J. Alonso was supported by Instituto de Salud Carlos III (PI12...”Publicado no EBioMedicine (2019)
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3
Por Han, Kyu-Hee, Oh, Doo-Yi, Lee, Seungmin, Lee, Chung, Han, Jin Hee, Kim, Min Young, Park, Hye-Rim, Park, Moo Kyun, Kim, Nayoung K. D., Lee, Jaekwang, Yi, Eunyoung, Kim, Jong-Min, Kim, Jeong-Whun, Chae, Jong-Hee, Oh, Seung Ha, Park, Woong-Yang, Choi, Byung Yoon
Publicado no Sci Rep (2017)
“..., leading to remarkable benefits. Collectively, the de novo ATP1A3 variant can cause postlingual-onset...”Publicado no Sci Rep (2017)
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4
Por Hora, Mariana Marques da, Azevedo, Estenio Ericson Botelho de, Cavalcanti, Mirella Correia e Sá
Publicado em 2020
“...RESUMO:Sendo parte da Comunidade Surda, propomo-nos a discutir sobre o acesso à Justiça por Pessoas...”Publicado em 2020
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5
Por Mariano Figueira Gama, Zadig
Publicado em 2020
“.... Sob uma perspectiva teórico-metodológica na qual se coadunam pesquisa de fontes primárias, revisão da...”Publicado em 2020
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6
“... galega non empezan a desenvolverse ata os anos 1990, e fano fundamentalmente no seo do Instituto da...”
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7
“... na análise da variabilidade espacial dos parâmetros granulométricos – média (μ), desvio-padrão (σ) e...”
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8
Por Mönkkönen, Hannu, Auriola, Seppo, Lehenkari, Petri, Kellinsalmi, Maarit, Hassinen, Ilmo E, Vepsäläinen, Jouko, Mönkkönen, Jukka
Publicado em 2006
“... that these bisphosphonates can induce formation of a novel ATP analog (ApppI) as a consequence of the inhibition...”Publicado em 2006
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Artigo
9
“... between the numbers of ATP binding sites and of non-ATP binding sites. We also constructed a new gold...”
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10
ATP-dependent roles of the DEAD-box protein Mss116p in group II intron splicing in vitro and in vivo
Por Potratz, Jeffrey P., Campo, Mark Del, Wolf, Rachel Z., Lambowitz, Alan M., Russell, Rick
Publicado em 2011
“... group I and group II introns. For most of its functions, Mss116p is thought to use ATP-dependent RNA...”Publicado em 2011
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Artigo
11
“... disease. Previously, we showed that the G2019S pathogenic mutation can cause a dramatic increase (~10 fold...”
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Artigo
12
“... for ATP as an Investigational New Drug and two pathways for its marketing approval; one therapeutic, i...”
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14
Por Zhang, Jianming, Adrián, Francisco J., Jahnke, Wolfgang, Cowan-Jacob, Sandra W., Li, Allen G., Iacob, Roxana E., Sim, Taebo, Powers, John, Dierks, Christine, Sun, Fangxian, Guo, Gui-Rong, Ding, Qiang, Okram, Barun, Choi, Yongmun, Wojciechowski, Amy, Deng, Xianming, Liu, Guoxun, Fendrich, Gabriele, Strauss, Andre, Vajpai, Navratna, Grzesiek, Stephan, Tuntland, Tove, Liu, Yi, Bursulaya, Badry, Azam, Mohammad, Manley, Paul W., Engen, John R., Daley, George Q., Warmuth, Markus, Gray, Nathanael S.
Publicado em 2010
“...In an effort to find new pharmacological modalities to overcome resistance to ATP-site inhibitors...”Publicado em 2010
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Artigo
15
“... by DNase I. After that, the released ATP molecule can react with another aptamer on the PDA/UiO-66...”
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16
Por Sugi, Haruo, Akimoto, Tsuyoshi, Sutoh, Kazuo, Chaen, Shigeru, Oishi, Noboru, Suzuki, Suechika
Publicado em 1997
“... head movement may be mostly associated with reaction, M + ATP → M⋅ADP⋅P(i). This work will open a new...”Publicado em 1997
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Por Ishii, Haruhiko, Du, Hansen, Zhang, Zhaoqing, Henderson, Angus, Sen, Ranjan, Pazin, Michael J.
Publicado em 2009
“.... In this report, we demonstrate that the ATP-dependent remodeling enzymes ACF and Mi2β can direct consecutive...”Publicado em 2009
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Artigo
19
A new Atp2b2 deafwaddler allele, dfw(i5), interacts strongly with Cdh23 and other auditory modifiers
“... of extracellular Ca(2+) in the endolymph. This study characterizes a novel null Atp2b2 allele, dfw(i5...”Obter o texto integral
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Artigo
20
“... the following changes considering: (1) a higher external ATP/ADP ratio and an ATP/ADP carrier less displaced...”
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Artigo