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  1. 1.   Locking and Unlocking Thrombin Function Using Immunoquiescent Nucleic Acid Nanoparticles with Regulated Retention In Vivo
  2. Ke, Weina; Chandler, Morgan; Cedrone,Edward; Saito, Renata F; Rangel, Maria Cristina; de Souza Junqueira, Mara; Wang, Jian; Shi, Da; Truong, Nguyen; Richardson, Melina; Rolband, Lewis A; Dréau, Didier; Bedocs, Peter; Chammas, Roger; Dokholyan, Nikolay V; Dobrovolskaia,Marina; Afonin, Kirill A
  3. Nano Letters. 2022, Jul 05;
  1. 2.   Generation and characterization of monoclonal antibodies that recognize human and murine supervillin protein isoforms
  2. Smith, Tara C.; Saul, Rick; Barton, Elisabeth R.; Luna, Elizabeth J.
  3. PloS one. 2018, Oct 17; 13(10):
  1. 3.   Triggered Formation of Anionic Hydrogels from Self-Assembling Acidic Peptide Amphiphiles
  2. Sinthuvanich, Chomdao; Nagy-Smith, Katelyn J.; Walsh, Scott; Schneider, Joel
  3. Macromolecules. 2017, Aug 08; 50(15): 5643-5651.
  1. 4.   Eph/ephrin signaling in cell-cell and cell-substrate adhesion
  2. Singh, A.; Winterbottom, E.; Daar, I. O.
  3. Frontiers in Bioscience-Landmark. 2012, Jan; 17: 473-497.
  1. 5.   Ultrastructural localization of extracellular matrix proteins of the lymph node cortex: evidence supporting the reticular network as a pathway for lymphocyte migration
  2. Sobocinski, G. P.; Toy, K.; Bobrowski, W. F.; Shaw, S.; Anderson, A. O.; Kaldjian, E. P.
  3. Bmc Immunology. 2010, Aug; 11: 11.
  1. 6.   Lipid-Modulated Pharmacophore Nanorods Assembled at the Air/Water Interface
  2. Philosof-Mazor, L.; Volinsky, R.; Jopp, J.; Blumberg, P.; Rapaport, H.; Marquez, V. E.; Jelinek, R.
  3. Chemphyschem. 2009 10(15): 2615-2619.
  1. 7.   Cellular and tissue distribution of intravenously administered agalsidase alfa
  2. Murray, G. J.; Anver, M. R.; Kennedy, M. A.; Quirk, J. M.; Schiffmann, R.
  3. Molecular Genetics and Metabolism. 2007, Mar; 90(3): 307-312.
  1. 8.   Structure by design: from single proteins and their building blocks to nanostructures
  2. Tsai, C. J.; Zheng, J.; Aleman, C.; Nussinov, R.
  3. Trends in Biotechnology. 2006, Oct; 24(10): 449-454.
  1. 9.   The regulation of acetylcholinesterase by cis-elements within intron I in cultured contracting myotubes
  2. Cohen, T. V.; R, all
  3. Journal of Neurochemistry. 2006, Aug; 98(3): 723-734.
  1. 10.   De novo tubular nanostructure design based on self-assembly of beta-helical protein motifs
  2. Haspel, N.; Zanuy, D.; Aleman, C.; Wolfson, H.; Nussinov, R.
  3. Structure. 2006, Jul; 14(7): 1137-1148.
  1. 11.   Actin is the primary cellular receptor of bistramide A
  2. Statsuk, A. V.; Bai, R. L.; Baryza, J. L.; Verma, V. A.; Hamel, E.; Wender, P. A.; Kozmin, S. A.
  3. Nature Chemical Biology. 2005, DEC; 1(7): 383-388.
  1. 12.   Actin-myosin-based contraction is responsible for apoptotic nuclear disintegration
  2. Croft, D. R.; Coleman, M. L.; Li, S. X.; Robertson, D.; Sullivan, T.; Stewart, C. L.; Olson, M. F.
  3. Journal of Cell Biology. 2005, JAN 17; 168(2): 245-255.
  1. 13.   Replacing acid alpha-glucosidase in Pompe disease: Recombinant and transgenic enzymes are equipotent, but neither completely clears glycogen from type II muscle fibers
  2. Raben, N.; Fukuda, T.; Gilbert, A. L.; de Jong, D.; Thurberg, B. L.; Mattaliano, R. J.; Meikle, P.; Hopwood, J. J.; Nagashima, K.; Nagaraju, K.; Plotz, P. H.
  3. Molecular Therapy. 2005, JAN; 11(1): 48-56.
  1. 14.   Rac1 mediates collapse of microvilli on chemokine-activated T lymphocytes
  2. Nijhara, R.; van Hennik, P. B.; Gignac, M. L.; Kruhlak, M. J.; Hordijk, P. L.; Delon, J.; Shaw, S.
  3. Journal of Immunology. 2004, OCT 15; 173(8): 4985-4993.
  1. 15.   Insights into amyloid structural formation and assembly through computational approaches
  2. Zanuy, D.; Gunasekaran, K.; Ma, B. Y.; Tsai, H. H.; Tsai, C. J.; Nussinov, R.
  3. Amyloid-Journal of Protein Folding Disorders. 2004, SEP; 11(3): 143-161.
  1. 16.   NT-3 replacement with brain-derived neurotrophic factor redirects vestibular nerve fibers to the cochlea
  2. Tessarollo, L.; Coppola, V.; Fritzsch, B.
  3. Journal of Neuroscience. 2004 24(10): 2575-2584.
  1. 17.   Juxtaparanodal clustering of Shaker-like K+ channels in myelinated axons depends on Caspr2 and TAG-1
  2. Poliak, S.; Salomon, D.; Elhanany, H.; Sabanay, H.; Kiernan, B.; Pevny, L.; Stewart, C. L.; Xu, X. R.; Chiu, S. Y.; Shrager, P.; Furley, A. J. W.; Peles, E.
  3. Journal of Cell Biology. 2003 162(6): 1149-1160.
  1. 18.   Microtubules, cell compartments and Rho GTPases: a "menage a trois" for efficient migration
  2. Ory, S.; Jurdic, P.
  3. M S-Medecine Sciences. 2001 17(8-9): 878-885.
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