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  1. 2.   Inhibition of Bacterial Gene Transcription with an RpoN-Based Stapled Peptide
  2. Payne, Sterling R; Pau, Daniel I; Whiting, Amanda L; Kim, Ye Joon; Pharoah, Blaze M; Moi, Christina; Boddy, Christopher N; Bernal, Federico
  3. Cell Chemical Biology. 2018, Sep 20; 25(9): 1059-1066.e4.
  1. 3.   Protein/peptide transduction in metanephric explant culture
  2. Plisov, S.; Wang, H.; Tarasova, N.; Sharma, N.; Perantoni, A. O.
  3. Methods in molecular biology (Clifton, N.J.). 2014 1092: 255-67.
  1. 4.   Protein delivery using engineered virus-like particles
  2. Kaczmarczyk, S. J.; Sitaraman, K.; Young, H. A.; Hughes, S. H.; Chatterjee, D. K.
  3. Proceedings of the National Academy of Sciences of the United States of America. 2011, Oct; 108(41): 16998-17003.
  1. 5.   Optimization of a Cyclic Peptide Inhibitor of Ser/Thr Phosphatase PPM1D (Wip1)
  2. Hayashi, R.; Tanoue, K.; Durell, S. R.; Chatterjee, D. K.; Jenkins, L. M. M.; Appella, D. H.; Appella, E.
  3. Biochemistry. 2011, May; 50(21): 4537-4549.
  1. 6.   Recent Advances from the National Cancer Institute Alliance for Nanotechnology in Cancer
  2. Farrell, D.; Alper, J.; Ptak, K.; Panaro, N. J.; Grodzinski, P.; Barker, A. D.
  3. Acs Nano. 2010, Feb; 4(2): 589-594.
  1. 7.   Various drug delivery approaches to the central nervous system
  2. Pasha, S.; Gupta, K.
  3. Expert Opinion on Drug Delivery. 2010, Jan; 7(1): 113-135.
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