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  1. 1.   Show your cap or be packaged into HIV-1
  2. Levin, Judith G.; Rein, Alan
  3. Proceedings of the National Academy of Sciences of The United States of America. 2021, Oct 5; 118(40):
  1. 2.   Structural insights into the function of the catalytically active human Taspase1
  2. Nagaratnam, Nirupa; Delker, Silvia L.; Jernigan, Rebecca; Edwards, Thomas E.; Snider, Janey; Thifault, Darren; Williams, Dewight; Nannenga, Brent L.; Stofega, Mary; Sambucetti, Lidia; Hsieh, James J.; Flint,Andrew; Fromme, Petra; Martin-Garcia, Jose M.
  3. Structure. 2021, Aug 5; 29(8): 873-+.
  1. 3.   Energetic and structural features of SARS-CoV-2 N-protein co-assemblies with nucleic acids
  2. Zhao, Huaying; Nguyen, Ai; Li, Yan; Adao, Regina C.; Valkov,Eugene; Patterson, George H.; Piszczek, Grzegorz; Schuck, Peter
  3. iScience. 2021, Jun 25; 24(6):
  1. 4.   The quaternary assembly of KRas4B with Raf-1 at the membrane
  2. Jang,Hyunbum; Zhang,Mingzhen; Nussinov,Ruth
  3. Computational and Structural Biotechnology Journal. 2020, Mar 25; 18: 737-748.
  1. 5.   Biochemical and structural analyses reveal that the tumor suppressor neurofibromin (NF1) forms a high-affinity dimer
  2. Sherekar,Mukul; Han, Sae-Won; Ghirlando, Rodolfo; Messing,Simon; Drew,Matt; Rabara,Dana; Waybright,Tim; Juneja, Puneet; O'Neill, Hugh; Stanley, Christopher B; Bhowmik, Debsindhu; Ramanathan, Arvind; Subramaniam,Sriram; Nissley,Dwight; Gillette,Bill; McCormick, Frank; Esposito,Dom
  3. The Journal of biological chemistry. 2020, JAN 24; 295(4): 1105-1119.
  1. 6.   Assaying Homodimers of NF-?B in Live Single Cells
  2. Martin, Erik W; Chakraborty, Sayantan; Presman, Diego M; Tomassoni Ardori,Francesco; Oh, Kyu-Seon; Kaileh, Mary; Tessarollo,Lino; Sung, Myong-Hee
  3. Frontiers in immunology. 2019, Nov 7; 10: 2609.
  1. 7.   Emerging Allosteric Mechanism of EGFR Activation in Physiological and Pathological Contexts
  2. Tsai,Chung-Jung; Nussinov,Ruth
  3. Biophysical journal. 2019, Jul 9; 117(1): 5-13.
  1. 8.   Allosteric activation of RAF in the MAPK signaling pathway
  2. Tsai,Chung-Jung; Nussinov,Ruth
  3. CURRENT OPINION IN STRUCTURAL BIOLOGY. 2018, Dec; 53: 100-106.
  1. 9.   Unraveling the molecular mechanism of interactions of the Rho GTPases Cdc42 and Rac1 with the scaffolding protein IQGAP2
  2. Ozdemir, E Sila; Jang, Hyunbum; Gursoy, Attila; Keskin, Ozlem; Li, Zhigang; Sacks, David B; Nussinov, Ruth
  3. The Journal of Biological Chemistry. 2018, Mar 9; 293(10): 3685-3699.
  1. 10.   The importance of Raf dimerization in cell signaling
  2. Freeman, A. K.; Ritt, D. A.; Morrison, D. K.
  3. Small GTPases. 2013, Jul-Sep; 4(3): 180-5.
  1. 11.   Solution Properties of Murine Leukemia Virus Gag Protein: Differences from HIV-1 Gag
  2. Datta, S. A. K.; Zuo, X. B.; Clark, P. K.; Campbell, S. J.; Wang, Y. X.; Rein, A.
  3. Journal of Virology. 2011, Dec; 85(23): 12733-12741.
  1. 12.   Microwave-Based Reaction Screening: Tandem Retro-Diels Alder/Diels-Alder Cycloadditions of o-Quinol Dimers
  2. Dong, S. W.; Cahill, K. J.; Kang, M. I.; Colburn, N. H.; Henrich, C. J.; Wilson, J. A.; Beutler, J. A.; Johnson, R. P.; Porco, J. A.
  3. Journal of Organic Chemistry. 2011, Nov; 76(21): 8944-8954.
  1. 13.   Mechanisms and Factors that Influence High Frequency Retroviral Recombination
  2. Delviks-Frankenberry, K.; Galli, A.; Nikolaitchik, O.; Mens, H.; Pathak, V. K.; Hu, W. S.
  3. Viruses-Basel. 2011, Sep; 3(9): 1650-1680.
  1. 14.   SHAPE analysis of the FIV Leader RNA reveals a structural switch potentially controlling viral packaging and genome dimerization
  2. Kenyon, J. C.; Tanner, S. J.; Legiewicz, M.; Phillip, P. S.; Rizvi, T. A.; Le Grice, S. F. J.; Lever, A. M. L.
  3. Nucleic Acids Research. 2011, Aug; 39(15): 6692-6704.
  1. 15.   Use of RNA structure flexibility data in nanostructure modeling
  2. Kasprzak, W.; Bindewald, E.; Kim, T. J.; Jaeger, L.; Shapiro, B. A.
  3. Methods. 2011, Jun; 54(2): 239-250.
  1. 16.   Self-Assembling RNA Nanorings Based on RNAI/II Inverse Kissing Complexes
  2. Grabow, W. W.; Zakrevsky, P.; Afonin, K. A.; Chworos, A.; Shapiro, B. A.; Jaeger, L.
  3. Nano Letters. 2011, Feb; 11(2): 878-887.
  1. 17.   Delineation of the Preferences and Requirements of the Human Immunodeficiency Virus Type 1 Dimerization Initiation Signal by Using an In Vivo Cell-Based Selection Approach
  2. Hussein, I. T. M.; Ni, N.; Galli, A.; Chen, J. B.; Moore, M. D.; Hu, W. S.
  3. Journal of Virology. 2010, Jul; 84(13): 6866-6875.
  1. 18.   Limitations of Peptide Retro-inverso Isomerization in Molecular Mimicry
  2. Li, C.; Pazgier, M.; Li, J.; Li, C. Q.; Liu, M.; Zou, G. Z.; Li, Z. Y.; Chen, J. D.; Tarasov, S. G.; Lu, W. Y.
  3. Journal of Biological Chemistry. 2010, Jun; 285(25): 19572-19581.
  1. 19.   12 Arylstibonic acids that inhibit the DNA binding of five B-ZIP dimers
  2. Rishi, V.; Oh, W. J.; Heyerdahl, S. L.; Zhao, J. F.; Scudiero, D.; Shoemaker, R. H.; Vinson, C.
  3. Journal of Structural Biology. 2010, May; 170(2): 216-225.
  1. 20.   C-terminal Domain Modulates the Nucleic Acid Chaperone Activity of Human T-cell Leukemia Virus Type 1 Nucleocapsid Protein via an Electrostatic Mechanism
  2. Qualley, D. F.; Stewart-Maynard, K. M.; Wang, F.; Mitra, M.; Gorelick, R. J.; Rouzina, I.; Williams, M. C.; Musier-Forsyth, K.
  3. Journal of Biological Chemistry. 2010, Jan; 285(1): 295-307.
  1. 21.   High efficiency of HIV-1 genomic RNA packaging and heterozygote formation revealed by single virion analysis
  2. Chen, J. B.; Nikolaitchik, O.; Singh, J.; Wright, A.; Bencsics, C. E.; Coffin, J. M.; Ni, N.; Lockett, S.; Pathak, V. K.; Hu, W. S.
  3. Proceedings of the National Academy of Sciences of the United States of America. 2009 106(32): 13535-13540.
  1. 22.   HIV-1 RNA dimerization: It takes two to tango
  2. Moore, M. D.; Hu, W. S.
  3. Aids Reviews. 2009 11(2): 91-102.
  1. 23.   Gene conversion between mammalian CCR2 and CCR5 chemokine receptor genes: A potential mechanism for receptor dimerization
  2. Vazquez-Salat, N.; Yuhki, N.; Beck, T.; O'Brien, S. J.; Murphy, W. J.
  3. Genomics. 2007, Aug; 90(2): 213-224.
  1. 24.   Molecular determinants of HIV-1 intersubtype recombination potential
  2. Chin, M. P. S.; Chen, J. B.; Nikolaitchik, O. A.; Hu, W. S.
  3. Virology. 2007, Jul; 363(2): 437-446.
  1. 25.   Dimer initiation signal of human immunodeficiency virus type 1: Its role in partner selection during RNA copackaging and its effects on recombination
  2. Moore, M. D.; Fu, W.; Nikolaitchik, O.; Chen, J. B.; Ptak, R. G.; Hu, W. S.
  3. Journal of Virology. 2007, Apr; 81(8): 4002-4011.
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