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  1. 1.   RAS Nanoclusters: Dynamic Signaling Platforms Amenable to Therapeutic Intervention
  2. Van,Que; Prakash, Priyanka; Shrestha,Rebika; Balius,Trent; Turbyville,Tommy; Stephen,Andy
  3. Biomolecules. 2021, Mar 3; 11(3):
  1. 2.   Plasma Membrane Anchoring and Gag:Gag Multimerization on Viral RNA Are Critical Properties of HIV-1 Gag Required To Mediate Efficient Genome Packaging
  2. Duchon, Alice; Santos, Steven; Chen, Jianbo; Brown, Matthew; Nikolaitchik, Olga A.; Tai, Sheldon; Chao, Jeffrey A.; Freed,Eric; Pathak,Vinay; Hu, Wei-Shau
  3. mBio. 2021, Nov-Dec; 12(6):
  1. 3.   Prevalence and Significance of Plasmid Maintenance Functions in the Virulence Plasmids of Pathogenic Bacteria
  2. Sengupta, M.; Austin, S.
  3. Infection and Immunity. 2011, Jul; 79(7): 2502-2509.
  1. 4.   Measuring cooperative Rev protein-protein interactions on Rev responsive RNA by fluorescence resonance energy transfer
  2. Vercruysse, T.; Pawar, S.; De Borggraeve, W.; Pardon, E.; Pavlakis, G. N.; Pannecouque, C.; Steyaert, J.; Balzarini, J.; Daelemans, D.
  3. Rna Biology. 2011, Mar-Apr; 8(2): 316-324.
  1. 5.   Fundamental differences between the nucleic acid chaperone activities of HIV-1 nucleocapsid protein and Gag or Gag-derived proteins: Biological implications
  2. Wu, T. Y.; Datta, S. A. K.; Mitra, M.; Gorelick, R. J.; Rein, A.; Levin, J. G.
  3. Virology. 2010, Sep; 405(2): 556-567.
  1. 6.   Optimized Method for Computing O-18/O-16 Ratios of Differentially Stable-Isotope Labeled Peptides in the Context of Postdigestion O-18 Exchange/Labeling
  2. Ye, X. Y.; Luke, B. T.; Johann, D. J.; Ono, A.; Prieto, D. A.; Chan, K. C.; Issaq, H. J.; Veenstra, T. D.; Blonder, J.
  3. Analytical Chemistry. 2010, Jul; 82(13): 5878-5886.
  1. 7.   Inhibition of human immunodeficiency virus type 1 assembly and release by the cholesterol-binding compound amphotericin B methyl ester: Evidence for Vpu dependence
  2. Waheed, A. A.; Ablan, S. D.; Soheilian, F.; Nagashima, K.; Ono, A.; Schaffner, C. P.; Freed, E. O.
  3. Journal of Virology. 2008 82(19): 9776-9781.
  1. 8.   Multicopy plasmid modification with phage lambda red recombineering
  2. Thomason, L. C.; Costantino, N.; Shaw, D. V.; Court, D. L.
  3. Plasmid. 2007, Sep; 58(2): 148-158.
  1. 9.   Antigen binding and stability properties of non-covalently linked anti-CD22 single-chain Fv dimers
  2. Arndt, M. A. E.; Krauss, R.; Rybak, S. M.
  3. Febs Letters. 2004, DEC 17; 578(3): 257-261.
  1. 10.   In vivo HIV-1 rev multimerization in the nucleolus and cytoplasm identified by fluorescence resonance energy transfer
  2. Daelemans, D.; Costes, S. V.; Cho, E. H.; Erwin-Cohen, R. A.; Lockett, S.; Pavlakis, G. N.
  3. Journal of Biological Chemistry. 2004, NOV 26; 279(48): 50167-50175.
  1. 11.   Synthesis and HIV-1 integrase inhibitory activity of dimeric and tetrameric analogs of indolicidin
  2. Krajewski, K.; March, C.; Long, Y. Q.; Pommier, Y.; Roller, P. P.
  3. Bioorganic & Medicinal Chemistry Letters. 2004, NOV 15; 14(22): 5595-5598.
  1. 12.   Oligomerization of the SARS-CoV S glycoprotein: dimerization of the N-terminus and trimerization of the ectodomain
  2. Xiao, X. D.; Feng, Y.; Chakraborti, S.; Dimitrov, D. S.
  3. Biochemical and Biophysical Research Communications. 2004, SEP 10; 322(1): 93-99.
  1. 13.   Concerted evolution and higher-order repeat structure of the 1.709 (satellite IV) family in bovids
  2. Modi, W. S.; Ivanov, S.; Gallagher, D. S.
  3. Journal of Molecular Evolution. 2004 58(4): 460-465.
  1. 14.   The Rad27 (Fen-1) nuclease inhibits Ty1 mobility in Saccharomyces cerevisiae
  2. Sundararajan, A.; Lee, B. S.; Garfinkel, D. J.
  3. Genetics. 2003 163(1): 55-67.
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