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  1. 1.   Covalent Macrocyclic Proteasome Inhibitors Mitigate Resistance in Plasmodium falciparum
  2. Bennett, John M; Ward, Kurt E; Muir, Ryan K; Kabeche, Stephanie; Yoo,Euna; Yeo, Tomas; Lam, Grace; Zhang, Hao; Almaliti, Jehad; Berger, Gabriel; Faucher, Franco F; Lin, Gang; Gerwick, William H; Yeh, Ellen; Fidock, David A; Bogyo, Matthew
  3. ACS Infectious Diseases. 2023, Oct 13; 9(10): 2036-2047.
  1. 2.   A Synthetic Mirror Image of Kalata B1 Reveals that Cyclotide Activity Is Independent of a Protein Receptor
  2. Sando, L.; Henriques, S. T.; Foley, F.; Simonsen, S. M.; Daly, N. L.; Hall, K. N.; Gustafson, K. R.; Aguilar, M. I.; Craik, D. J.
  3. Chembiochem. 2011, Nov; 12(16): 2456-2462.
  1. 3.   Structure-based design of potent Grb2-SH2 domain antagonists not relying on phosphotyrosine mimics
  2. Jiang, S.; Li, P.; Peach, M. L.; Bindu, L.; Worthy, K. W.; Fisher, R. J.; Burke, T. R.; Nicklaus, M.; Roller, P. P.
  3. Biochemical and Biophysical Research Communications. 2006, Oct; 349(2): 497-503.
  1. 4.   Isolation and characterization of novel cyclotides from Viola hederaceae - Solution structure and anti-HIV activity of vhl-1, a leaf-specific expressed cyclotide
  2. Chen, B.; Colgrave, M. L.; Daly, N. L.; Rosengren, K. J.; Gustafson, K. R.; Craik, D. J.
  3. Journal of Biological Chemistry. 2005, JUN 10; 280(23): 22395-22405.
  1. 5.   Binding affinity difference induced by the stereochemistry of the sulfoxide bridge of the cyclic peptide inhibitors of Grb2-SH2 domain: NMR studies for the structural origin
  2. Shi, Y. H.; Song, Y. L.; Lin, D. H.; Tan, J. Z.; Roller, P. P.; Li, Q.; Long, Y. Q.; Song, G. Q.
  3. Biochemical and Biophysical Research Communications. 2005, MAY 20; 330(4): 1254-1261.
  1. 6.   Structure of circulin B and implications for antimicrobial activity of the cyclotides
  2. Koltay, A.; Daly, N. L.; Gustafson, K. R.; Craik, D. J.
  3. International Journal of Peptide Research and Therapeutics. 2005, MAR; 11(1): 99-106.
  1. 7.   Anti-HIV cyclotides
  2. Gustafson, K. R.; McKee, T. C.; Bokesch, H. R.
  3. Current Protein & Peptide Science. 2004, OCT; 5(5): 331-340.
  1. 8.   The role of the cyclic peptide backbone in the anti-HIV activity of the cyclotide kalata B1
  2. Daly, N. L.; Gustafson, K. R.; Craik, D. J.
  3. Febs Letters. 2004, SEP 10; 574(1-3): 69-72.
  1. 9.   Structural basis for a non-phosphorus-containing cyclic peptide binding to Grb2-SH2 domain with high affinity
  2. Li, P.; Zhang, M. C.; Peach, M. L.; Zhang, X. D.; Liu, H. P.; Nicklaus, M.; Yang, D. J.; Roller, P. P.
  3. Biochemical and Biophysical Research Communications. 2003 307(4): 1038-1044.
  1. 10.   Solution structure by NMR of circulin A: A macrocyclic knotted peptide having anti-HIV activity
  2. Daly, N. L.; Koltay, A.; Gustafson, K. R.; Boyd, M. R.; Casas-Finet, J. R.; Craik, D. J.
  3. Journal of Molecular Biology. 1999 285(1): 333-345.
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