Mostrando 601 - 620 Resultados de 2,285 Para Buscar '"Hera"', tiempo de consulta: 0.14s Limitar resultados
  1. 601
    “…The HerA ATPase cooperates with the NurA nuclease and the Mre11-Rad50 complex for the repair of double-strand DNA breaks in thermophilic archaea. …”
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  2. 602
    “…METHODS: To overcome limitations of antibody-based TNFRSF agonists, we have developed HERA-GITRL, a fully human hexavalent TNF receptor agonist (HERA) targeting GITR and mimicking the natural signaling concept. …”
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  3. 603
  4. 604
    por Abramowicz, H., Abt, I., Adamczyk, L., Adamus, M., Andreev, V., Antonelli, S., Antunovic, B., Aushev, V., Aushev, Y., Baghdasaryan, A., Begzsuren, K., Behnke, O., Behrendt Dubak, A., Behrens, U., Belousov, A., Belov, P., Bertolin, A., Bloch, I., Boos, E.G., Borras, K., Boudry, V., Brandt, G., Brisson, V., Britzger, D., Brock, I., Brook, N.H., Brugnera, R., Bruni, A., Buniatyan, A., Bussey, P.J., Bylinkin, A., Bystritskaya, L., Caldwell, A., Campbell, A.J., Cantun Avila, K.B., Capua, M., Catterall, C.D., Ceccopieri, F., Cerny, K., Chekelian, V., Chwastowski, J., Ciborowski, J., Ciesielski, R., Contreras, J.G., Cooper-Sarkar, A.M., Corradi, M., Corriveau, F., Cvach, J., Dainton, J.B., Daum, K., Dementiev, R.K., Devenish, R.C.E., Diaconu, C., Dobre, M., Dodonov, V., Dolinska, G., Dusini, S., Eckerlin, G., Egli, S., Elsen, E., Favart, L., Fedotov, A., Feltesse, J., Ferencei, J., Figiel, J., Fleischer, M., Fomenko, A., Foster, B., Gabathuler, E., Gach, G., Gallo, E., Garfagnini, A., Gayler, J., Geiser, A., Ghazaryan, S., Gizhko, A., Gladilin, L.K., Goerlich, L., Gogitidze, N., Golubkov, Yu. A., Gouzevitch, M., Grab, C., Grebenyuk, A., Grebenyuk, J., Greenshaw, T., Gregor, I., Grindhammer, G., Grzelak, G., Gueta, O., Guzik, M., Gwenlan, C., Haidt, D., Hain, W., Henderson, R.C.W., Henkenjohann, P., Hladky, J., Hochman, D., Hoffmann, D., Hori, R., Horisberger, R., Hreus, T., Huber, F., Ibrahim, Z.A., Iga, Y., Ishitsuka, M., Iudin, A., Jacquet, M., Janssen, X., Januschek, F., Jomhari, N.Z., Jung, H., Kadenko, I., Kananov, S., Kapichine, M., Karshon, U., Kaur, M., Kaur, P., Kiesling, C., Kisielewska, D., Klanner, R., Klein, M., Klein, U., Kleinwort, C., Kogler, R., Kondrashova, N., Kononenko, O., Korol, Ie., Korzhavina, I.A., Kostka, P., Kotanski, A., Kotz, U., Kovalchuk, N., Kowalski, H., Kretzschmar, J., Kruger, K., Krupa, B., Kuprash, O., Kuze, M., Landon, M.P.J., Lange, W., Laycock, P., Lebedev, A., Levchenko, B.B., Levonian, S., Levy, A., Libov, V., Limentani, S., Lipka, K., Lisovyi, M., List, B., List, J., Lobodzinska, E., Lobodzinski, B., Lohr, B., Lohrmann, E., Longhin, A., Lontkovskyi, D., Lukina, O.Yu., Makarenko, I., Malinovski, E., Malka, J., Martyn, H.U., Maxfield, S.J., Mehta, A., Mergelmeyer, S., Meyer, A.B., Meyer, H., Meyer, J., Mikocki, S., Idris, F.Mohamad, Morozov, A., Nasir, N.Muhammad, Muller, K., Myronenko, V., Nagano, K., Naumann, Th., Newman, P.R., Niebuhr, C., Nikiforov, A., Nobe, T., Notz, D., Nowak, G., Nowak, R.J., Olsson, J.E., Onishchuk, Yu., Ozerov, D., Pahl, P., Pascaud, C., Patel, G.D., Paul, E., Perez, E., Perlanski, W., Petrukhin, A., Picuric, I., Pirumov, H., Pitzl, D., Pokorny, B., Pokrovskiy, N.S., Polifka, R., Przybycien, M., Radescu, V., Raicevic, N., Ravdandorj, T., Reimer, P., Rizvi, E., Robmann, P., Roloff, P., Roosen, R., Rostovtsev, A., Rotaru, M., Rubinsky, I., Rusakov, S., Ruspa, M., Salek, D., Sankey, D.P.C., Sauter, M., Sauvan, E., Saxon, D.H., Schioppa, M., Schmidke, W.B., Schmitt, S., Schneekloth, U., Schoeffel, L., Schoning, A., Schorner-Sadenius, T., Sefkow, F., Shcheglova, L.M., Shevchenko, R., Shkola, O., Shushkevich, S., Shyrma, Yu., Singh, I., Skillicorn, I.O., Slominski, W., Solano, A., Soloviev, Y., Sopicki, P., South, D., Spaskov, V., Specka, A., Stanco, L., Steder, M., Stefaniuk, N., Stella, B., Stern, A., Stopa, P., Straumann, U., Sykora, T., Sztuk-Dambietz, J., Szuba, D., Szuba, J., Tassi, E., Thompson, P.D., Tokushuku, K., Tomaszewska, J., Traynor, D., Trofymov, A., Truol, P., Tsakov, I., Tseepeldorj, B., Tsurugai, T., Turcato, M., Turkot, O., Turnau, J., Tymieniecka, T., Valkarova, A., Vallee, C., Van Mechelen, P., Vazdik, Y., Verbytskyi, A., Viazlo, O., Walczak, R., Wan Abdullah, W.A.T., Wegener, D., Wichmann, K., Wing, M., Wolf, G., Wunsch, E., Yamada, S., Yamazaki, Y., Zacek, J., Zakharchuk, N., Zarnecki, A.F., Zawiejski, L., Zenaiev, O., Zhang, Z., Zhautykov, B.O., Zhmak, N., Zlebcik, R., Zohrabyan, H., Zomer, F., Zotkin, D.S.
    Publicado 2015
    “…A combination is presented of all inclusive deep inelastic cross sections previously published by the H1 and ZEUS collaborations at HERA for neutral and charged current $e^{\pm}p$ scattering for zero beam polarisation. …”
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  5. 605
    “…In this work we present a determination of the MSbar charm mass from a fit to the inclusive and charm HERA deep-inelastic structure function data. The analysis is performed within the xFitter framework, with structure functions computed in the FONLL general-mass scheme as implemented in APFEL. …”
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  6. 606
  7. 607
  8. 608
  9. 609
  10. 610
  11. 611
  12. 612
    “…The nuclease NurA and the ATPase HerA are present in all known thermophilic archaea and cooperate with the highly conserved MRE11/RAD50 proteins to facilitate efficient DNA double-strand break end processing during homologous recombinational repair. …”
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  13. 613
  14. 614
  15. 615
    “…They cover numerous inclusive jet measurements by the H1 and ZEUS experiments at HERA. An extraction of the strong coupling constant is performed as an application of the use of such grids and a best-fit value of $\alpha _{\mathrm {s}} (M_{{\mathrm {Z}}}) = 0.1170\,(15)_\text {exp}\,(25)_\text {th}$ is obtained using the HERA inclusive jet cross section data.…”
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  16. 616
  17. 617
  18. 618
    “…The Thermus thermophilus helicase Hera is the first dimeric DEAD box helicase. Crystal structures of Hera fragments reveal a bipartite C-terminal domain with a novel dimerization motif and an RNA-binding module. …”
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  19. 619
    “…A genetic complementation assay with mutant proteins was combined with biochemical characterization demonstrating that the ATPase activity of HerA, the interaction between HerA and NurA, and the efficient 5′-3′ DNA end resection activity of the HerA-NurA complex are essential for cell viability. …”
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  20. 620
    Publicado 2004
    Libro
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