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Autor:
Grapotte M., Saraswat M., Bessiere C., Menichelli C., Ramilowski J. A., Severin J., Hayashizaki Y., Itoh M., Tagami M., Murata M., Kojima-Ishiyama M., Noma S., Noguchi S., Kasukawa T., Hasegawa A., Suzuki H., Nishiyori-Sueki H., Frith M. C., Abugessaisa I., Aitken S., Aken B. L., Alam I., Alam T., Alasiri R., Alhendi A. M. N., Alinejad-Rokny H., Alvarez M. J., Andersson R., Arakawa T., Araki M., Arbel T., Archer J., Archibald A. L., Arner E., Arner P., Asai K., Ashoor H., Astrom G., Babina M., Baillie J. K., Bajic V. B., Bajpai A., Baker S., Baldarelli R. M., Balic A., Bansal M., Batagov A. O., Batzoglou S., Beckhouse A. G., Beltrami A. P., Beltrami C. A., Bertin N., Bhattacharya S., Bickel P. J., Blake J. A., Blanchette M., Bodega B., Bonetti A., Bono H., Bornholdt J., Bttcher M., Bougouffa S., Boyd M., Breda J., Brombacher F., Brown J. B., Bult C. J., Burroughs A. M., Burt D. W., Busch A., Caglio G., Califano A., Cameron C. J., Cannistraci C. V., Carbone A., Carlisle A. J., Carninci P., Carter K. W., Cesselli D., Chang J. -C., Chen J. C., Chen Y., Chierici M., Christodoulou J., Ciani Y., Clark E. L., Coskun M., Dalby M., Dalla E., Daub C. O., Davis C. A., de Hoon M. J. L., de Rie D., Denisenko E., Deplancke B., Detmar M., Deviatiiarov R., Di Bernardo D., Diehl A. D., Dieterich L. C., Dimont E., Djebali S., Dohi T., Dostie J., Drablos F., Edge A. S. B., Edinger M., Ehrlund A., Ekwall K., Elofsson A., Endoh M., Enomoto H., Enomoto S., Faghihi M., Fagiolini M., Farach-Carson M. C., Faulkner G. J., Favorov A., Fernandes A. M., Ferrai C., Forrest A. R. R., Forrester L. M., Forsberg M., Fort A., Francescatto M., Freeman T. C., Frith M., Fukuda S., Funayama M., Furlanello C., Furuno M., Furusawa C., Gao H., Gazova I., Gebhard C., Geier F., Geijtenbeek T. B. H., Ghosh S., Ghosheh Y., Gingeras T. R., Gojobori T., Goldberg T., Goldowitz D., Gough J., Greco D., Gruber A. J., Guhl S., Guigo R., Guler R., Gusev O., Gustincich S., Ha T. J., Haberle V., Hale P., Hallstrom B. M., Hamada M., Handoko L., Hara M., Harbers M., Harrow J., Harshbarger J., Hase T., Hashimoto K., Hatano T., Hattori N., Hayashi R., Herlyn M., Hettne K., Heutink P., Hide W., Hitchens K. J., Sui S. H., 't Hoen P. A. C., Hon C. C., Hori F., Horie M., Horimoto K., Horton P., Hou R., Huang E., Huang Y., Hugues R., Hume D., Ienasescu H., Iida K., Ikawa T., Ikemura T., Ikeo K., Inoue N., Ishizu Y., Ito Y., Ivshina A. V., Jankovic B. R., Jenjaroenpun P., Johnson R., Jorgensen M., Jorjani H., Joshi A., Jurman G., Kaczkowski B., Kai C., Kaida K., Kajiyama K., Kaliyaperumal R., Kaminuma E., Kanaya T., Kaneda H., Kapranov P., Kasianov A. S., Katayama T., Kato S., Kawaguchi S., Kawai J., Kawaji H., Kawamoto H., Kawamura Y. I., Kawasaki S., Kawashima T., Kempfle J. S., Kenna T. J., Kere J., Khachigian L., Kiryu H., Kishima M., Kitajima H., Kitamura T., Kitano H., Klaric E., Klepper K., Klinken S. P., Kloppmann E., Knox A. J., Kodama Y., Kogo Y., Kojima M., Kojima S., Komatsu N., Komiyama H., Kono T., Koseki H., Koyasu S., Kratz A., Kukalev A., Kulakovskiy I., Kundaje A., Kunikata H., Kuo R., Kuo T., Kuraku S., Kuznetsov V. A., Kwon T. J., Larouche M., Lassmann T., Law A., Le-Cao K. -A., Lecellier C. -H., Lee W., Lenhard B., Lennartsson A., Li K., Li R., Lilje B., Lipovich L., Lizio M., Lopez G., Magi S., Mak G. K., Makeev V., Manabe R., Mandai M., Mar J., Maruyama K., Maruyama T., Mason E., Mathelier A., Matsuda H., Medvedeva Y. A., Meehan T. F., Mejhert N., Meynert A., Mikami N., Minoda A., Miura H., Miyagi Y., Miyawaki A., Mizuno Y., Morikawa H., Morimoto M., Morioka M., Morishita S., Moro K., Motakis E., Motohashi H., Mukarram A. K., Mummery C. L., Mungall C. J., Murakawa Y., Muramatsu M., Nagasaka K., Nagase T., Nakachi Y., Nakahara F., Nakai K., Nakamura K., Nakamura Y., Nakazawa T., Nason G. P., Nepal C., Nguyen Q. H., Nielsen L. K., Nishida K., Nishiguchi K. M., Nishiyori H., Nitta K., Notredame C., Ogishima S., Ohkura N., Ohno H., Ohshima M., Ohtsu T., Okada Y., Okada-Hatakeyama M., Okazaki Y., Oksvold P., Orlando V., Ow G. S., Ozturk M., Pachkov M., Paparountas T., Parihar S. P., Park S. -J., Pascarella G., Passier R., Persson H., Philippens I. H., Piazza S., Plessy C., Pombo A., Ponten F., Poulain S., Poulsen T. M., Pradhan S., Prezioso C., Pridans C., Qin X. -Y., Quackenbush J., Rackham O., Ramilowski J., Ravasi T., Rehli M., Rennie S., Rito T., Rizzu P., Robert C., Roos M., Rost B., Roudnicky F., Roy R., Rye M. B., Sachenkova O., Saetrom P., Sai H., Saiki S., Saito M., Saito A., Sakaguchi S., Sakai M., Sakaue S., Sakaue-Sawano A., Sandelin A., Sano H., Sasamoto Y., Sato H., Saxena A., Saya H., Schafferhans A., Schmeier S., Schmidl C., Schmocker D., Schneider C., Schueler M., Schultes E. A., Schulze-Tanzil G., Semple C. A., Seno S., Seo W., Sese J., Sheng G., Shi J., Shimoni Y., Shin J. W., SimonSanchez J., Sivertsson A., Sjostedt E., Soderhall C., Laurent G. S., Stoiber M. H., Sugiyama D., Summers K. M., Suzuki A. M., Suzuki K., Suzuki M., Suzuki N., Suzuki T., Swanson D. J., Swoboda R. K., Taguchi A., Takahashi H., Takahashi M., Takamochi K., Takeda S., Takenaka Y., Tam K. T., Tanaka H., Tanaka R., Tanaka Y., Tang D., Taniuchi I., Tanzer A., Tarui H., Taylor M. S., Terada A., Terao Y., Testa A. C., Thomas M., Thongjuea S., Tomii K., Triglia E. T., Toyoda H., Tsang H. G., Tsujikawa M., Uhlen M., Valen E., van de Wetering M., van Nimwegen E., Velmeshev D., Verardo R., Vitezic M., Vitting-Seerup K., von Feilitzen K., Voolstra C. R., Vorontsov I. E., Wahlestedt C., Wasserman W. W., Watanabe K., Watanabe S., Wells C. A., Winteringham L. N., Wolvetang E., Yabukami H., Yagi K., Yamada T., Yamaguchi Y., Yamamoto M., Yamamoto Y., Yamanaka Y., Yano K., Yasuzawa K., Yatsuka Y., Yo M., Yokokura S., Yoneda M., Yoshida E., Yoshida Y., Yoshihara M., Young R., Young R. S., Yu N. Y., Yumoto N., Zabierowski S. E., Zhang P. G., Zucchelli S., Zwahlen M., Chatelain C., Brehelin L.
Publikováno v:
Nature communications, vol 12, iss 1
Nature Communications
Nature Communications, 2021, 12, pp.1-18/3297. ⟨10.1038/s41467-021-23143-7⟩
Nature communications, 12(1):3297. Nature Publishing Group
Nature Communications, Nature Publishing Group, 2021, 12, pp.1-18. ⟨10.1038/s41467-021-23143-7⟩
Nature Communications, Vol 12, Iss 1, Pp 1-18 (2021)
Grapotte, M, Saraswat, M, Bessière, C, Menichelli, C, Ramilowski, J A, Severin, J, Hayashizaki, Y, Itoh, M, Tagami, M, Murata, M, Kojima-Ishiyama, M, Noma, S, Noguchi, S, Kasukawa, T, Hasegawa, A, Suzuki, H, Nishiyori-Sueki, H, Frith, M C, Abugessaisa, I, Aitken, S, Aken, B L, Alam, I, Alam, T, Alasiri, R, Alhendi, A M N, Alinejad-Rokny, H, Alvarez, M J, Andersson, R, Arakawa, T, Araki, M, Arbel, T, Bornholdt, J, Boyd, M, Chen, Y, Coskun, M, Dalby, M, Ienasescu, H, Jørgensen, M, Kaczkowski, B, Kere, J, Li, K, Lilje, B, Nepal, C, Nguyen, Q H, Nielsen, L K, Rennie, S, Sandelin, A, Valen, E, Vitezic, M, Vitting-Seerup, K & FANTOM Consortium 2021, ' Discovery of widespread transcription initiation at microsatellites predictable by sequence-based deep neural network ', Nature Communications, vol. 12, 3297 . https://doi.org/10.1038/s41467-021-23143-7
Grapotte, Mathys; Saraswat, Manu; Bessière, Chloé; Menichelli, Christophe; Ramilowski, Jordan A; Severin, Jessica; Hayashizaki, Yoshihide; Itoh, Masayoshi; Tagami, Michihira; Murata, Mitsuyoshi; Kojima-Ishiyama, Miki; Noma, Shohei; Noguchi, Shuhei; Kasukawa, Takeya; Hasegawa, Akira; Suzuki, Harukazu; Nishiyori-Sueki, Hiromi; Frith, Martin C; Chatelain, Clément; Carninci, Piero; ... (2021). Discovery of widespread transcription initiation at microsatellites predictable by sequence-based deep neural network. Nature communications, 12(1), p. 3297. Nature Publishing Group 10.1038/s41467-021-23143-7
Grapotte, M, Saraswat, M, Bessière, C, Menichelli, C, Ramilowski, J A, Severin, J, Hayashizaki, Y, Itoh, M, Tagami, M, Murata, M, Kojima-ishiyama, M, Noma, S, Noguchi, S, Kasukawa, T, Hasegawa, A, Suzuki, H, Nishiyori-sueki, H, Frith, M, Abugessaisa, I, Aitken, S, Aken, B L, Alam, I, Alam, T, Alasiri, R, Alhendi, A M N, Alinejad-rokny, H, Alvarez, M J, Andersson, R, Arakawa, T, Araki, M, Arbel, T, Archer, J, Archibald, A L, Arner, E, Arner, P, Asai, K, Ashoor, H, Astrom, G, Babina, M, Baillie, J K, Bajic, V B, Bajpai, A, Baker, S, Baldarelli, R M, Balic, A, Bansal, M, Batagov, A O, Batzoglou, S, Beckhouse, A G, Beltrami, A P, Beltrami, C A, Bertin, N, Bhattacharya, S, Bickel, P J, Blake, J A, Blanchette, M, Bodega, B, Bonetti, A, Bono, H, Bornholdt, J, Bttcher, M, Bougouffa, S, Boyd, M, Breda, J, Brombacher, F, Brown, J B, Bult, C J, Burroughs, A M, Burt, D W, Busch, A, Caglio, G, Califano, A, Cameron, C J, Cannistraci, C V, Carbone, A, Carlisle, A J, Carninci, P, Carter, K W, Cesselli, D, Chang, J, Chen, J C, Chen, Y, Chierici, M, Christodoulou, J, Ciani, Y, Clark, E L, Coskun, M, Dalby, M, Dalla, E, Daub, C O, Davis, C A, De Hoon, M J L, De Rie, D, Denisenko, E, Deplancke, B, Detmar, M, Deviatiiarov, R, Di Bernardo, D, Diehl, A D, Dieterich, L C, Dimont, E, Djebali, S, Dohi, T, Dostie, J, Drablos, F, Edge, A S B, Edinger, M, Ehrlund, A, Ekwall, K, Elofsson, A, Endoh, M, Enomoto, H, Enomoto, S, Faghihi, M, Fagiolini, M, Farach-carson, M C, Faulkner, G J, Favorov, A, Fernandes, A M, Ferrai, C, Forrest, A R R, Forrester, L M, Forsberg, M, Fort, A, Francescatto, M, Freeman, T C, Frith, M, Fukuda, S, Funayama, M, Furlanello, C, Furuno, M, Furusawa, C, Gao, H, Gazova, I, Gebhard, C, Geier, F, Geijtenbeek, T B H, Ghosh, S, Ghosheh, Y, Gingeras, T R, Gojobori, T, Goldberg, T, Goldowitz, D, Gough, J, Greco, D, Gruber, A J, Guhl, S, Guigo, R, Guler, R, Gusev, O, Gustincich, S, Ha, T J, Haberle, V, Hale, P, Hallstrom, B M, Hamada, M, Handoko, L, Hara, M, Harbers, M, Harrow, J, Harshbarger, J, Hase, T, Hasegawa, A, Hashimoto, K, Hatano, T, Hattori, N, Hayashi, R, Hayashizaki, Y, Herlyn, M, Hettne, K, Heutink, P, Hide, W, Hitchens, K J, Sui, S H, ’t Hoen, P A C, Hon, C C, Hori, F, Horie, M, Horimoto, K, Horton, P, Hou, R, Huang, E, Huang, Y, Hugues, R, Hume, D, Ienasescu, H, Iida, K, Ikawa, T, Ikemura, T, Ikeo, K, Inoue, N, Ishizu, Y, Ito, Y, Itoh, M, Ivshina, A V, Jankovic, B R, Jenjaroenpun, P, Johnson, R, Jorgensen, M, Jorjani, H, Joshi, A, Jurman, G, Kaczkowski, B, Kai, C, Kaida, K, Kajiyama, K, Kaliyaperumal, R, Kaminuma, E, Kanaya, T, Kaneda, H, Kapranov, P, Kasianov, A S, Kasukawa, T, Katayama, T, Kato, S, Kawaguchi, S, Kawai, J, Kawaji, H, Kawamoto, H, Kawamura, Y I, Kawasaki, S, Kawashima, T, Kempfle, J S, Kenna, T J, Kere, J, Khachigian, L, Kiryu, H, Kishima, M, Kitajima, H, Kitamura, T, Kitano, H, Klaric, E, Klepper, K, Klinken, S P, Kloppmann, E, Knox, A J, Kodama, Y, Kogo, Y, Kojima, M, Kojima, S, Komatsu, N, Komiyama, H, Kono, T, Koseki, H, Koyasu, S, Kratz, A, Kukalev, A, Kulakovskiy, I, Kundaje, A, Kunikata, H, Kuo, R, Kuo, T, Kuraku, S, Kuznetsov, V A, Kwon, T J, Larouche, M, Lassmann, T, Law, A, Le-cao, K, Lecellier, C, Lee, W, Lenhard, B, Lennartsson, A, Li, K, Li, R, Lilje, B, Lipovich, L, Lizio, M, Lopez, G, Magi, S, Mak, G K, Makeev, V, Manabe, R, Mandai, M, Mar, J, Maruyama, K, Maruyama, T, Mason, E, Mathelier, A, Matsuda, H, Medvedeva, Y A, Meehan, T F, Mejhert, N, Meynert, A, Mikami, N, Minoda, A, Miura, H, Miyagi, Y, Miyawaki, A, Mizuno, Y, Morikawa, H, Morimoto, M, Morioka, M, Morishita, S, Moro, K, Motakis, E, Motohashi, H, Mukarram, A K, Mummery, C L, Mungall, C J, Murakawa, Y, Muramatsu, M, Murata, M, Nagasaka, K, Nagase, T, Nakachi, Y, Nakahara, F, Nakai, K, Nakamura, K, Nakamura, Y, Nakamura, Y, Nakazawa, T, Nason, G P, Nepal, C, Nguyen, Q H, Nielsen, L K, Nishida, K, Nishiguchi, K M, Nishiyori, H, Nitta, K, Noguchi, S, Noma, S, Notredame, C, Ogishima, S, Ohkura, N, Ohno, H, Ohshima, M, Ohtsu, T, Okada, Y, Okada-hatakeyama, M, Okazaki, Y, Oksvold, P, Orlando, V, Ow, G S, Ozturk, M, Pachkov, M, Paparountas, T, Parihar, S P, Park, S, Pascarella, G, Passier, R, Persson, H, Philippens, I H, Piazza, S, Plessy, C, Pombo, A, Ponten, F, Poulain, S, Poulsen, T M, Pradhan, S, Prezioso, C, Pridans, C, Qin, X, Quackenbush, J, Rackham, O, Ramilowski, J, Ravasi, T, Rehli, M, Rennie, S, Rito, T, Rizzu, P, Robert, C, Roos, M, Rost, B, Roudnicky, F, Roy, R, Rye, M B, Sachenkova, O, Saetrom, P, Sai, H, Saiki, S, Saito, M, Saito, A, Sakaguchi, S, Sakai, M, Sakaue, S, Sakaue-sawano, A, Sandelin, A, Sano, H, Sasamoto, Y, Sato, H, Saxena, A, Saya, H, Schafferhans, A, Schmeier, S, Schmidl, C, Schmocker, D, Schneider, C, Schueler, M, Schultes, E A, Schulze-tanzil, G, Semple, C A, Seno, S, Seo, W, Sese, J, Severin, J, Sheng, G, Shi, J, Shimoni, Y, Shin, J W, Simonsanchez, J, Sivertsson, A, Sjostedt, E, Soderhall, C, Laurent, G S, Stoiber, M H, Sugiyama, D, Summers, K M, Suzuki, A M, Suzuki, H, Suzuki, K, Suzuki, M, Suzuki, N, Suzuki, T, Swanson, D J, Swoboda, R K, Tagami, M, Taguchi, A, Takahashi, H, Takahashi, M, Takamochi, K, Takeda, S, Takenaka, Y, Tam, K T, Tanaka, H, Tanaka, R, Tanaka, Y, Tang, D, Taniuchi, I, Tanzer, A, Tarui, H, Taylor, M S, Terada, A, Terao, Y, Testa, A C, Thomas, M, Thongjuea, S, Tomii, K, Triglia, E T, Toyoda, H, Tsang, H G, Tsujikawa, M, Uhlén, M, Valen, E, Van De Wetering, M, Van Nimwegen, E, Velmeshev, D, Verardo, R, Vitezic, M, Vitting-seerup, K, Von Feilitzen, K, Voolstra, C R, Vorontsov, I E, Wahlestedt, C, Wasserman, W W, Watanabe, K, Watanabe, S, Wells, C A, Winteringham, L N, Wolvetang, E, Yabukami, H, Yagi, K, Yamada, T, Yamaguchi, Y, Yamamoto, M, Yamamoto, Y, Yamamoto, Y, Yamanaka, Y, Yano, K, Yasuzawa, K, Yatsuka, Y, Yo, M, Yokokura, S, Yoneda, M, Yoshida, E, Yoshida, Y, Yoshihara, M, Young, R, Young, R S, Yu, N Y, Yumoto, N, Zabierowski, S E, Zhang, P G, Zucchelli, S, Zwahlen, M, Chatelain, C, Carninci, P, De Hoon, M J L, Wasserman, W W, Bréhélin, L & Lecellier, C 2021, ' Discovery of widespread transcription initiation at microsatellites predictable by sequence-based deep neural network ', Nature Communications, vol. 12, no. 1 . https://doi.org/10.1038/s41467-021-23143-7
Nature Communications, Nature Publishing Group, 2021, 12 (1), ⟨10.1038/s41467-021-23143-7⟩
Nature Communications, 12 (1)
Nature Communications
Nature Communications, 2021, 12, pp.1-18/3297. ⟨10.1038/s41467-021-23143-7⟩
Nature communications, 12(1):3297. Nature Publishing Group
Nature Communications, Nature Publishing Group, 2021, 12, pp.1-18. ⟨10.1038/s41467-021-23143-7⟩
Nature Communications, Vol 12, Iss 1, Pp 1-18 (2021)
Grapotte, M, Saraswat, M, Bessière, C, Menichelli, C, Ramilowski, J A, Severin, J, Hayashizaki, Y, Itoh, M, Tagami, M, Murata, M, Kojima-Ishiyama, M, Noma, S, Noguchi, S, Kasukawa, T, Hasegawa, A, Suzuki, H, Nishiyori-Sueki, H, Frith, M C, Abugessaisa, I, Aitken, S, Aken, B L, Alam, I, Alam, T, Alasiri, R, Alhendi, A M N, Alinejad-Rokny, H, Alvarez, M J, Andersson, R, Arakawa, T, Araki, M, Arbel, T, Bornholdt, J, Boyd, M, Chen, Y, Coskun, M, Dalby, M, Ienasescu, H, Jørgensen, M, Kaczkowski, B, Kere, J, Li, K, Lilje, B, Nepal, C, Nguyen, Q H, Nielsen, L K, Rennie, S, Sandelin, A, Valen, E, Vitezic, M, Vitting-Seerup, K & FANTOM Consortium 2021, ' Discovery of widespread transcription initiation at microsatellites predictable by sequence-based deep neural network ', Nature Communications, vol. 12, 3297 . https://doi.org/10.1038/s41467-021-23143-7
Grapotte, Mathys; Saraswat, Manu; Bessière, Chloé; Menichelli, Christophe; Ramilowski, Jordan A; Severin, Jessica; Hayashizaki, Yoshihide; Itoh, Masayoshi; Tagami, Michihira; Murata, Mitsuyoshi; Kojima-Ishiyama, Miki; Noma, Shohei; Noguchi, Shuhei; Kasukawa, Takeya; Hasegawa, Akira; Suzuki, Harukazu; Nishiyori-Sueki, Hiromi; Frith, Martin C; Chatelain, Clément; Carninci, Piero; ... (2021). Discovery of widespread transcription initiation at microsatellites predictable by sequence-based deep neural network. Nature communications, 12(1), p. 3297. Nature Publishing Group 10.1038/s41467-021-23143-7
Grapotte, M, Saraswat, M, Bessière, C, Menichelli, C, Ramilowski, J A, Severin, J, Hayashizaki, Y, Itoh, M, Tagami, M, Murata, M, Kojima-ishiyama, M, Noma, S, Noguchi, S, Kasukawa, T, Hasegawa, A, Suzuki, H, Nishiyori-sueki, H, Frith, M, Abugessaisa, I, Aitken, S, Aken, B L, Alam, I, Alam, T, Alasiri, R, Alhendi, A M N, Alinejad-rokny, H, Alvarez, M J, Andersson, R, Arakawa, T, Araki, M, Arbel, T, Archer, J, Archibald, A L, Arner, E, Arner, P, Asai, K, Ashoor, H, Astrom, G, Babina, M, Baillie, J K, Bajic, V B, Bajpai, A, Baker, S, Baldarelli, R M, Balic, A, Bansal, M, Batagov, A O, Batzoglou, S, Beckhouse, A G, Beltrami, A P, Beltrami, C A, Bertin, N, Bhattacharya, S, Bickel, P J, Blake, J A, Blanchette, M, Bodega, B, Bonetti, A, Bono, H, Bornholdt, J, Bttcher, M, Bougouffa, S, Boyd, M, Breda, J, Brombacher, F, Brown, J B, Bult, C J, Burroughs, A M, Burt, D W, Busch, A, Caglio, G, Califano, A, Cameron, C J, Cannistraci, C V, Carbone, A, Carlisle, A J, Carninci, P, Carter, K W, Cesselli, D, Chang, J, Chen, J C, Chen, Y, Chierici, M, Christodoulou, J, Ciani, Y, Clark, E L, Coskun, M, Dalby, M, Dalla, E, Daub, C O, Davis, C A, De Hoon, M J L, De Rie, D, Denisenko, E, Deplancke, B, Detmar, M, Deviatiiarov, R, Di Bernardo, D, Diehl, A D, Dieterich, L C, Dimont, E, Djebali, S, Dohi, T, Dostie, J, Drablos, F, Edge, A S B, Edinger, M, Ehrlund, A, Ekwall, K, Elofsson, A, Endoh, M, Enomoto, H, Enomoto, S, Faghihi, M, Fagiolini, M, Farach-carson, M C, Faulkner, G J, Favorov, A, Fernandes, A M, Ferrai, C, Forrest, A R R, Forrester, L M, Forsberg, M, Fort, A, Francescatto, M, Freeman, T C, Frith, M, Fukuda, S, Funayama, M, Furlanello, C, Furuno, M, Furusawa, C, Gao, H, Gazova, I, Gebhard, C, Geier, F, Geijtenbeek, T B H, Ghosh, S, Ghosheh, Y, Gingeras, T R, Gojobori, T, Goldberg, T, Goldowitz, D, Gough, J, Greco, D, Gruber, A J, Guhl, S, Guigo, R, Guler, R, Gusev, O, Gustincich, S, Ha, T J, Haberle, V, Hale, P, Hallstrom, B M, Hamada, M, Handoko, L, Hara, M, Harbers, M, 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W, Bréhélin, L & Lecellier, C 2021, ' Discovery of widespread transcription initiation at microsatellites predictable by sequence-based deep neural network ', Nature Communications, vol. 12, no. 1 . https://doi.org/10.1038/s41467-021-23143-7
Nature Communications, Nature Publishing Group, 2021, 12 (1), ⟨10.1038/s41467-021-23143-7⟩
Nature Communications, 12 (1)
Using the Cap Analysis of Gene Expression (CAGE) technology, the FANTOM5 consortium provided one of the most comprehensive maps of transcription start sites (TSSs) in several species. Strikingly, ~72% of them could not be assigned to a specific gene
Functional annotation of human long noncoding RNAs via molecular phenotyping (vol 30, pg 1060, 2020)
Autor:
Ramilowski, JA, Yip, CW, Agrawal, S, Chang, J-C, Ciani, Y, Kulakovskiy, IV, Mendez, M, Ooi, JLC, Ouyang, JF, Parkinson, N, Petri, A, Roos, L, Severin, J, Yasuzawa, K, Abugessaisa, I, Akalin, A, Antonov, IV, Arner, E, Bonetti, A, Bono, H, Borsari, B, Brombacher, F, Cameron, CJF, Cannistraci, CV, Cardenas, R, Cardon, M, Chang, H, Dostie, J, Ducoli, L, Favorov, A, Fort, A, Garrido, D, Gil, N, Gimenez, J, Guler, R, Handoko, L, Harshbarger, J, Hasegawa, A, Hasegawa, Y, Hashimoto, K, Hayatsu, N, Heutink, P, Hirose, T, Imada, EL, Itoh, M, Kaczkowski, B, Kanhere, A, Kawabata, E, Kawaji, H, Kawashima, T, Kelly, ST, Kojima, M, Kondo, N, Koseki, H, Kouno, T, Kratz, A, Kurowska-Stolarska, M, Kwon, ATJ, Leek, J, Lennartsson, A, Lizio, M, Lopez-Redondo, F, Luginbuhl, J, Maeda, S, Makeev, VJ, Marchionni, L, Medvedeva, YA, Minoda, A, Muller, F, Munoz-Aguirre, M, Murata, M, Nishiyori, H, Nitta, KR, Noguchi, S, Noro, Y, Nurtdinov, R, Okazaki, Y, Orlando, V, Paquette, D, Parr, CJC, Rackham, OJL, Rizzu, P, Martinez, DFS, Sandelin, A, Sanjana, P, Semple, CAM, Shibayama, Y, Sivaraman, DM, Suzuki, T, Szumowski, SC, Tagami, M, Taylor, MS, Terao, C, Thodberg, M, Thongjuea, S, Tripathi, V, Ulitsky, I, Verardo, R, Vorontsov, IE, Yamamoto, C, Young, RS, Baillie, JK, Forrest, ARR, Guigo, R, Hoffman, MM, Hon, CC, Kasukawa, T, Kauppinen, S, Kere, J, Lenhard, B, Schneider, C, Suzuki, H, Yagi, K, De Hoon, MJL, Shin, JW, Carninci, P
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=od______1032::bcea09cf408ff0a635ad3f0623cb5254
http://hdl.handle.net/10044/1/87377
http://hdl.handle.net/10044/1/87377
Autor:
Handoko, L., Kaczkowski, B., Hon, C. C., Lizio, M., Wakamori, M., Matsuda, T., Ito, T., Jeyamohan, P., Sato, Y., Sakamoto, K., Yokoyama, S., Kimura, Hiroshi, Minoda, A., Umehara, T.
Publikováno v:
Epigenetics. 13(No. 4):410-431
The bromodomain and extra-terminal domain (BET) proteins are promising drug targets for cancer and immune diseases. However, BET inhibition effects have been studied more in the context of bromodomain-containing protein 4 (BRD4) than BRD2, and the BE
Akademický článek
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Akademický článek
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Autor:
Tomsett, Michael, Maffucci, Irene, Le Bailly, Bryden A. F., Byrne, Liam, Bijvoets, Stefan M., Lizio, M. Giovanna, Raftery, James, Butts, Craig P., Webb, Simon J., Contini, Alessandro, Clayden, Jonathan
Publikováno v:
Chemical Science
Inducing opposite screw senses at the two ends of a helix traps a helix reversal, allowing it to be characterised spectroscopically.
Helical oligomers of achiral monomers adopt domains of uniform screw sense, which are occasionally interrupted b
Helical oligomers of achiral monomers adopt domains of uniform screw sense, which are occasionally interrupted b
Autor:
De Rie D., Abugessaisa I., Alam T., Arner E., Arner P., Ashoor H., Åström G., Babina M., Bertin N., Burroughs A., Carlisle A., Daub C., Detmar M., Deviatiiarov R., Fort A., Gebhard C., Goldowitz D., Guhl S., Ha T., Harshbarger J., Hasegawa A., Hashimoto K., Herlyn M., Heutink P., Hitchens K., Hon C., Huang E., Ishizu Y., Kai C., Kasukawa T., Klinken P., Lassmann T., Lecellier C., Lee W., Lizio M., Makeev V., Mathelier A., Medvedeva Y., Mejhert N., Mungall C., Noma S., Ohshima M., Okada-Hatakeyama M., Persson H., Rizzu P., Roudnicky F., Sætrom P., Sato H., Severin J., Shin J., Swoboda R., Tarui H., Toyoda H., Vitting-Seerup K., Winteringham L., Yamaguchi Y., Yasuzawa K., Yoneda M., Yumoto N., Zabierowski S., Zhang P., Wells C., Summers K., Kawaji H., Sandelin A., Rehli M., Hayashizaki Y.
Publikováno v:
SCOPUS10870156-2017-35-9-SID85028474852
© 2017 Nature America, Inc., part of Springer Nature. MicroRNAs (miRNAs) are short non-coding RNAs with key roles in cellular regulation. As part of the fifth edition of the Functional Annotation of Mammalian Genome (FANTOM5) project, we created an
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=dedup_wf_001::622aecf1f32a43c7b55a09a722e53e78
https://openrepository.ru/article?id=704822
https://openrepository.ru/article?id=704822
Publikováno v:
SCOPUS10643745-2017-1650-SID85027583106
© Springer Science+Business Media LLC 2017. Cap analysis of gene expression (CAGE) is a convenient approach for genome-wide identification of promoter regions at single base-pair resolution level and accurate expression estimation of the correspondi
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=dedup_wf_001::b45804c393ac1d62e36d0dc58bd3b862
https://openrepository.ru/article?id=704721
https://openrepository.ru/article?id=704721
Autor:
Lizio M., Deviatiiarov R., Nagai H., Galan L., Arner E., Itoh M., Lassmann T., Kasukawa T., Hasegawa A., Ros M., Hayashizaki Y., Carninci P., Forrest A., Kawaji H., Gusev O., Sheng G.
Publikováno v:
SCOPUS15449173-2017-15-9-SID85030717188
© 2017 Lizio et al. Cap Analysis of Gene Expression (CAGE) in combination with single-molecule sequencing technology allows precision mapping of transcription start sites (TSSs) and genome-wide capture of promoter activities in differentiated and st
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=dedup_wf_001::2a3447cd858605fa8390a02dbb63f093
https://openrepository.ru/article?id=705756
https://openrepository.ru/article?id=705756