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Kle virus binds to 60S ribosomal subunits. RNA 14: 2379-2393. Sugio, T., Matsuura, H., Matsui, T., Matsunaga, M., Nosho, T., Kanaya, S., Shinmyo, A., and Kato, K. (2010). Effect of the sequence context of the AUG initiation codon on the rate of translation in dicotyledonous and monocotyledonous plant cells. J. Biosci. Bioeng. 109: 170-173. Szakonyi, d., and Byrne, M.E. (2011). Ribosomal protein L2
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Ruits TOR/S6K1 signalling to activate reinitiation after long ORF translation. EMBO J. 30: 1343-1356. Schmidt, M., Grief, J., and Feierabend, J. (2006). Mode of translational activation of the catalase (cat1) mRNA of rye leaves (Secale cereale L.) and its control through blue light and reactive oxygen. Planta 223: 835-846. Schoning, J.C., Streitner, C., Page, d.R., Hennig, S., uchida, K., Wolf, E.
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Ruits TOR/S6K1 signalling to activate reinitiation after long ORF translation. EMBO J. 30: 1343-1356. Schmidt, M., Grief, J., and Feierabend, J. (2006). Mode of translational activation of the catalase (cat1) mRNA of rye leaves (Secale cereale L.) and its control through blue light and reactive oxygen. Planta 223: 835-846. Schoning, J.C., Streitner, C., Page, d.R., Hennig, S., uchida, K., Wolf, E.
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Ncodes a protein with an unusually long leucine zipper domain. Plant Mol. Biol. 37: 171-178. Rook, F., Gerrits, N., Kortstee, A., van Kampen, M., Borrias, M., Weisbeek, P., and Smeekens, S. (1998b). Sucrose-specific signalling represses translation of the Arabidopsis ATB2 bZIP transcription factor gene. Plant J. 15: 253-263. Roy, B., vaughn, J.N., Kim, B.H., Zhou, F., Gilchrist, M.A., and von Arni
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Ds to rapamycin susceptibility. BMC Plant Biol. 7: 26. Sormani, R., delannoy, E., Lageix, S., Bitton, F., Lanet, E., Saezvasquez, J., deragon, J.M., Renou, J.P., and Robaglia, C. (2011b). Sublethal cadmium intoxication in Arabidopsis thaliana impacts translation at multiple levels. Plant Cell Physiol. 52: 436-447. Stadler, M., Artiles, K., Pak, J., and Fire, A. (2012). Contributions of mRNA abunda
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Ds to rapamycin susceptibility. BMC Plant Biol. 7: 26. Sormani, R., delannoy, E., Lageix, S., Bitton, F., Lanet, E., Saezvasquez, J., deragon, J.M., Renou, J.P., and Robaglia, C. (2011b). Sublethal cadmium intoxication in Arabidopsis thaliana impacts translation at multiple levels. Plant Cell Physiol. 52: 436-447. Stadler, M., Artiles, K., Pak, J., and Fire, A. (2012). Contributions of mRNA abunda
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Ds to rapamycin susceptibility. BMC Plant Biol. 7: 26. Sormani, R., delannoy, E., Lageix, S., Bitton, F., Lanet, E., Saezvasquez, J., deragon, J.M., Renou, J.P., and Robaglia, C. (2011b). Sublethal cadmium intoxication in Arabidopsis thaliana impacts translation at multiple levels. Plant Cell Physiol. 52: 436-447. Stadler, M., Artiles, K., Pak, J., and Fire, A. (2012). Contributions of mRNA abunda
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H reveals that the 5'-proximal region of the 5'-UTR has a cis-regulatory signature responsible for heat stress-regulated mRNA translation in Arabidopsis. Plant Cell Physiol. 54: 474-483. Mayberry, L.K., Allen, M.L., dennis, M.d., and Browning, K.S. (2009). Evidence for variation in the optimal translation initiation complex: plant eIF4B, eIF4F, and eIF(iso)4F differentially promote translation of