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  1. 1.   Bridgehead Modifications of Englerin A Reduce TRPC4 Activity and Intravenous Toxicity but not Cell Growth Inhibition
  2. Wu, Zhenhua; Suppo, Jean-Simon; Tumova, Sarka; Strope, Jonathan; Bravo, Fernando; Moy, Melody; Weinstein, Ethan S; Peer, Cody J; Figg, William D; Chain, William J; Echavarren, Antonio M; Beech, David J; Beutler,John
  3. ACS medicinal chemistry letters. 2020, Sep 10; 11(9): 1711-1716.
  1. 2.   Medin Oligomer Membrane Pore Formation: A Potential Mechanism of Vascular Dysfunction
  2. Younger, Scott; Jang,Hyunbum; Davies, Hannah A; Niemiec, Martin J; Garcia, Joe G N; Nussinov,Ruth; Migrino, Raymond Q; Madine, Jillian; Arce, Fernando T
  3. Biophysical journal. 2020, JUN 2; 118(11): 2769-2782.
  1. 3.   Effects of Point Substitutions on the Structure of Toxic Alzheimer's beta-Amyloid Channels: Atomic Force Microscopy and Molecular Dynamics Simulations
  2. Connelly, L.; Jang, H.; Arce, F. T.; Ramachandran, S.; Kagan, B. L.; Nussinov, R.; Lal, R.
  3. Biochemistry. 2012, Apr; 51(14): 3031-3038.
  1. 4.   Antimicrobial Properties of Amyloid Peptides
  2. Kagan, B. L.; Jang, H.; Capone, R.; Arce, F. T.; Ramachandran, S.; Lal, R.; Nussinov, R.
  3. Molecular Pharmaceutics. 2012, Apr; 9(4): 708-717.
  1. 5.   Probing Structural Features of Alzheimer's Amyloid-beta Pores in Bilayers Using Site-Specific Amino Acid Substitutions
  2. Capone, R.; Jang, H.; Kotler, S. A.; Kagan, B. L.; Nussinov, R.; Lal, R.
  3. Biochemistry. 2012, Jan; 51(3): 776-785.
  1. 6.   Polymorphism of amyloid beta peptide in different environments: implications for membrane insertion and pore formation
  2. Arce, F. T.; Jang, H. B.; Ramachandran, S.; Landon, P. B.; Nussinov, R.; Lal, R.
  3. Soft Matter. 2011, Jun 7; 7(11): 5267-5273.
  1. 7.   Antimicrobial Protegrin-1 Forms Amyloid-Like Fibrils with Rapid Kinetics Suggesting a Functional Link
  2. Jang, H. J. H.; Arce, F. T.; Mustata, M.; Ramachandran, S.; Capone, R.; Nussinov, R.; Lal, R.
  3. Biophysical Journal. 2011, Apr; 100(7): 1775-1783.
  1. 8.   beta-Barrel Topology of Alzheimer's beta-Amyloid Ion Channels
  2. Jang, H.; Arce, F. T.; Ramachandran, S.; Capone, R.; Lal, R.; Nussinov, R.
  3. Journal of Molecular Biology. 2010, Dec; 404(5): 917-934.
  1. 10.   Truncated beta-amyloid peptide channels provide an alternative mechanism for Alzheimer's Disease and Down syndrome
  2. Jang, H.; Arce, F. T.; Ramachandran, S.; Capone, R.; Azimova, R.; Kagan, B. L.; Nussinov, R.; Lal, R.
  3. Proceedings of the National Academy of Sciences of the United States of America. 2010, Apr; 107(14): 6538-6543.
  1. 11.   Misfolded amyloid ion channels present mobile beta-sheet subunits in contrast to conventional ion channels
  2. Jang, H.; Arce, F. T.; Capone, R.; Ramachandran, S.; Lal, R.; Nussinov, R.
  3. Biophysical Journal. 2009, Dec 2; 97(11): 3029-37.
  1. 12.   Annular structures as intermediates in fibril formation of Alzheimer A beta(17-42)
  2. Zheng, J.; Jang, H.; Ma, B.; Nussinov, R.
  3. Journal of Physical Chemistry B. 2008 112(22): 6856-6865.
  1. 13.   Molecular dynamics simulations of Alzheimer A beta(40) elongation and lateral association
  2. Zheng, J.; Ma, B. Y.; Chang, Y.; Nussinov, R.
  3. Frontiers in Bioscience. 2008 13: 3919-3930.
  1. 14.   Structure and chromosome location of the mouse P2X(1) purinoceptor gene (P2rx1)
  2. Liang, S. X.; Jenkins, N. A.; Gilbert, D. J.; Copeland, N. G.; Phillips, W. D.
  3. Cytogenetics and Cell Genetics. 2001 92(3-4): 333-336.
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