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  1. 1.   RNA cleavage and inhibition of protein synthesis by bleomycin
  2. Abraham, A. T.; Lin, J. J.; Newton, D. L.; Rybak, S.; Hecht, S. M.
  3. Chemistry & Biology. 2003 10(1): 45-52.
  1. 2.   Specifically targeting the CD22 receptor of human B-cell lymphomas with RNA damaging agents: A new generation of therapeutics
  2. Hursey, M.; Newton, D. L.; Hansen, H. J.; Ruby, D.; Goldenberg, D. M.; Rybak, S. M.
  3. Leukemia & Lymphoma. 2002 43(5): 953-959.
  1. 3.   Specifically targeting the CD22 receptor of human B-cell lymphomas with RNA damaging agents
  2. Newton, D. L.; Hansen, H. J.; Liu, H. T.; Ruby, D.; Iordanov, M. S.; Magun, B. E.; Goldenberg, D. M.; Rybak, S. M.
  3. Critical Reviews in Oncology Hematology. 2001 39(1-2): 79-86.
  1. 4.   Antibody targeted therapeutics for lymphoma: new focus on the CD22 antigen and RNA
  2. Newton, D. L.; Rybak, S. M.
  3. Expert Opinion on Biological Therapy. 2001 1(6): 995-1003.
  1. 5.   Inhibition of MDA-MB-231 human breast tumor xenografts and HER2 expression by anti-tumor agents GAP31 and MAP30
  2. Lee-Huang, S.; Huang, P. L.; Sun, Y. T.; Chen, H. C.; Kung, H. F.; Murphy, W. J.
  3. Anticancer Research. 2000 20(2A): 653-659.
  1. 6.   Cell cycle-related differences in susceptibility of NIH/3T3 cells to ribonucleases
  2. Smith, M. R.; Newton, D. L.; Mikulski, S. M.; Rybak, S. M.
  3. Experimental Cell Research. 1999 247(1): 220-232.
  1. 7.   Natural and engineered cytotoxic ribonucleases: Therapeutic potential
  2. Rybak, S. M.; Newton, D. L.
  3. Experimental Cell Research. 1999 253(2): 325-335.
  1. 8.   Single Amino Acid Substitutions At the N-Terminus of a Recombinant Cytotoxic Ribonuclease Markedly Influence Biochemical and Biological Properties
  2. Newton, D. L.; Boque, L.; Wlodawer, A.; Huang, C. Y.; Rybak, S. M.
  3. Biochemistry. 1998 37(15): 5173-5183.
  1. 9.   Expression and Characterization of a Cytotoxic Human-Frog Chimeric Ribonuclease - Potential For Cancer Therapy
  2. Newton, D. L.; Xue, Y.; Boque, L.; Wlodawer, A.; Kung, H. F.; Rybak, S. M.
  3. Protein Engineering. 1997 10(4): 463-470.
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