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  1. 1.   Profiling SARS-CoV-2 HLA-I peptidome reveals T cell epitopes from out-of-frame ORFs
  2. Weingarten-Gabbay, Shira; Klaeger, Susan; Sarkizova, Siranush; Pearlman, Leah R.; Chen, Da-Yuan; Gallagher, Kathleen M. E.; Bauer, Matthew R.; Taylor, Hannah B.; Dunn, W. Augustine; Tarr, Christina; Sidney, John; Rachimi, Suzanna; Conway, Hasahn L.; Katsis, Katelin; Wang, Yuntong; Leistritz-Edwards, Del; Durkin, Melissa R.; Tomkins-Tinch, Christopher H.; Finkel, Yaara; Nachshon, Aharon; Gentili, Matteo; Rivera, Keith D.; Carulli, Isabel P.; Chea, Vipheaviny A.; Chandrashekar, Abishek; Bozkus, Cansu Cimen; Carrington,Mary; Bhardwaj, Nina; Barouch, Dan H.; Sette, Alessandro; Maus, Marcela; Rice, Charles M.; Clauser, Karl R.; Keskin, Derin B.; Pregibon, Daniel C.; Hacohen, Nir; Carr, Steven A.; Abelin, Jennifer G.; Saeed, Mohsan; Sabeti, Pardis C.
  3. CELL. 2021, Jul 22; 184(15): 3962-3980.e17.
  1. 2.   Constitutive reductions in mTOR alter cell size, immune cell development, and antibody production
  2. Zhang, S. L.; Readinger, J. A.; DuBois, W.; Janka-Junttila, M.; Robinson, R.; Pruitt, M.; Bliskovsky, V.; Wu, J. Z.; Sakakibara, K.; Patel, J.; Parent, C. A.; Tessarollo, L.; Schwartzberg, P. L.; Mock, B. A.
  3. Blood. 2011, Jan; 117(4): 1228-1238.
  1. 3.   Induction of apoptosis in human cancer cells by candidaspongiolide, a novel sponge polyketide
  2. Trisciuoglio, D.; Uranchimeg, B.; Cardellina, J. H.; Meragelman, T. L.; Matsunaga, S.; Fusetani, N.; Del Bufalo, D.; Shoemaker, R. H.; Melillo, G.
  3. Journal of the National Cancer Institute. 2008 100(17): 1233-1246.
  1. 4.   Programmed cell death-4 tumor suppressor protein contributes to retinoic acid-induced terminal granulocytic differentiation human myeloid leukemia cells
  2. Ozpolat, B.; Akar, U.; Steiner, M.; Zorrilia-Calancha, I.; Tirado-Gomez, M.; Colburn, N.; Danilenko, M.; Kornblau, S.; Berestein, G. L.
  3. Molecular Cancer Research. 2007, Jan; 5(1): 95-108.
  1. 5.   Mutational analysis of the DEAD-box RNA helicase eIF4AII characterizes its interaction with transformation suppressor Pdcd4 and eIF4GI
  2. Zakowicz, H.; Yang, H. S.; Stark, C.; Wlodawer, A.; Laronde-Leblanc, N.; Colburn, N. H.
  3. Rna-a Publication of the Rna Society. 2005, MAR; 11(3): 261-274.
  1. 6.   Characterization of programmed cell death 4 in multiple human cancers reveals a novel enhancer of drug sensitivity
  2. Jansen, A. P.; Camalier, C. E.; Stark, C.; Colburn, N. H.
  3. Molecular Cancer Therapeutics. 2004 3(2): 103-110.
  1. 7.   A novel function of the MA-3 domains in transformation and translation suppressor Pdcd4 is essential for its binding to eukaryotic translation initiation factor 4A
  2. Yang, H. S.; Cho, M. H.; Zakowicz, H.; Hegamyer, G.; Sonenberg, N.; Colburn, N. H.
  3. Molecular and Cellular Biology. 2004 24(9): 3894-3906.
  1. 8.   Mapping and characterization of the minimal internal ribosome entry segment in the human c-myc mRNA 5 ' untranslated region
  2. Cencig, S.; Nanbru, C.; Le, S. Y.; Gueydan, C.; Huez, G.; Kruys, V.
  3. Oncogene. 2004 23(1): 267-277.
  1. 9.   Elevated expression of eIF4E in confined early breast cancer lesions: Possible role of hypoxia
  2. DeFatta, R. J.; Turbat-Herrera, E. A.; Li, B. D. L.; Anderson, W.; De Benedetti, A.
  3. International Journal of Cancer. 1999 80(4): 516-522.
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