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  1. 1.   A monomeric envelope glycoprotein cytoplasmic tail is sufficient for HIV-1 Gag lattice trapping and incorporation
  2. Groves, Nicholas S; Clark, Austin R; Aguilar, Rebekah S; Hikichi,Yuta; Kostenko, Anastasiia; Bruns, Merissa M; Aron, Alegra T; Freed,Eric; van Engelenburg, Schuyler B
  3. Journal of virology. 2025, Apr 15; e0210524.
  1. 2.   Human Immunodeficiency Virus Type 1 Gag Polyprotein Modulates Membrane Physical Properties like a Surfactant: Potential Implications for Virus Assembly
  2. Denieva, Zaret G; Kuzmin, Peter I; Galimzyanov, Timur R; Datta,Siddhartha; Rein,Alan; Batishchev, Oleg V
  3. ACS Infectious Diseases. 2024, Jun 25;
  1. 3.   Modeling and Analysis of HIV-1 Pol Polyprotein as a Case Study for Predicting Large Polyprotein Structures
  2. Hao,Ming; Imamichi,Tomozumi; Chang,Weizhong
  3. International Journal of Molecular Sciences. 2024, Feb 02; 25(3):
  1. 4.   The Design of a Participatory Peptide Nucleic Acid Duplex Crosslinker to Enhance the Stiffness of Self-Assembled Peptide Gels
  2. Sarkar,Srijani; Anderson,Caleb; Schneider,Joel
  3. Angewandte Chemie (International ed. in English). 2023, Dec 06; e202313507.
  1. 5.   Structure of Vibrio Phage XM1, a Simple Contractile DNA Injection Machine
  2. Wang,Jenny; Fokine, Andrei; Guo, Xinwu; Jiang, Wen; Rossmann, Michael G; Kuhn, Richard J; Luo, Zhu-Hua; Klose, Thomas
  3. Viruses. 2023, Jul 31; 15(8):
  1. 6.   The Effect of Inositol Hexakisphosphate on HIV-1 Particle Production and Infectivity can be Modulated by Mutations that Affect the Stability of the Immature Gag Lattice
  2. Kleinpeter,Alex; Zhu, Yanan; Mallery, Donna L; Ablan,Sherimay; Chen, Long; Hardenbrook, Nathan; Saiardi, Adolfo; James, Leo C; Zhang, Peijun; Freed,Eric
  3. Journal of Molecular Biology. 2023, Apr 01; 435(11): 168037.
  1. 7.   The E. coli L-asparaginase V27T mutant: structural and functional characterization and comparison with theoretical predictions
  2. Strzelczyk, Pawel; Zhang,Di; Wlodawer,Alexander; Lubkowski,Jacek
  3. FEBS Letters. 2022, Oct 30; 596(23): 3060-3068.
  1. 8.   The dimeric form of bacterial L-asparaginase YpAI is fully active
  2. Strzelczyk,Pawel; Zhang,Di; Alexandratos,Jerry; Piszczek, Grzegorz; Wlodawer,Alexander; Lubkowski,Jacek
  3. The FEBS Journal. 2022, Sep 24;
  1. 9.   Dataset of high-throughput ligand screening against the RNA Packaging Signals regulating Hepatitis B Virus nucleocapsid formation
  2. Abulwerdi, Fardokht; Fatehi, Farzad; Manfield, Iain W; Le Grice,Stuart; Schneekloth,Jay; Twarock, Reidun; Stockley, Peter G; Patel, Nikesh
  3. Data in Brief. 2022, Jun; 42: 108206.
  1. 10.   The interaction of spongistatin 1 with tubulin
  2. Bai,Ruoli; Smith, Amos B; Pettit, George R; Hamel,Ernest
  3. Archives of Biochemistry and Biophysics. 2022, May 17; 109296.
  1. 11.   The mechanism of activation of MEK1 by B-Raf and KSR1
  2. Maloney,Ryan; Zhang,Mingzhen; Liu,Yonglan; Jang,Hyunbum; Nussinov,Ruth
  3. Cellular and molecular life sciences : CMLS. 2022, May 04; 79(5): 281.
  1. 12.   Dysregulation of Hepatitis B Virus Nucleocapsid Assembly in vitro by RNA-binding Small Ligands
  2. Patel, Nikesh; Abulwerdi, Fardokht; Fatehi, Farzad; Manfield, Iain; Le Grice,Stuart; Schneekloth,Jay; Twarock, Reidun; Stockley, Peter G
  3. Journal of Molecular Biology. 2022, Mar 24; 167557.
  1. 13.   Peptide hydrogels for affinity-controlled release of therapeutic cargo: Current and potential strategies
  2. Nambiar,Monessha; Schneider,Joel
  3. Journal of Peptide Science. 2021, Nov 7; e3377.
  1. 14.   From structure to application: Progress and opportunities in peptide materials development
  2. Lopez Silva,Tania; Schneider,Joel
  3. Current Opinion in Chemical Biology. 2021, Oct; 64: 131-144.
  1. 15.   Controlled Organization of Inorganic Materials Using Biological Molecules for Activating Therapeutic Functionalities
  2. Chandler, Morgan; Minevich, Brian; Roark, Brandon; Viard,Mathias; Johnson, M Brittany; Rizvi, Mehedi H; Deaton, Thomas A; Kozlov, Seraphim; Panigaj, Martin; Tracy, Joseph B; Yingling, Yaroslava G; Gang, Oleg; Afonin, Kirill A
  3. ACS applied materials & interfaces. 2021, Aug 25; 13(33): 39030-39041.
  1. 16.   Antibacterial Gel Coatings Inspired by the Cryptic Function of a Mussel Byssal Peptide
  2. Fichman, Galit; Andrews, Caroline; Patel,Nimit; Schneider,Joel
  3. Advanced materials (Deerfield Beach, Fla.). 2021, Aug 22; e2103677.
  1. 17.   Next generation polyphosphazene immunoadjuvant: Synthesis, self-assembly and in vivo potency with human papillomavirus VLPs-based vaccine
  2. Marin, Alexander; Chowdhury, Ananda; Valencia, Sarah M.; Zacharia, Athina; Kirnbauer, Reinhard; Roden, Richard B. S.; Pinto,Ligia; Shoemaker, Robert H.; Marshall,Jason; Andrianov, Alexander K.
  3. Nanomedicine : Nanotechnology, Biology, and Medicine. 2021, Apr 1; 33
  1. 19.   Serum Protein Adsorption Modulates the Toxicity of Highly Positively Charged Hydrogel Surfaces
  2. Yamada, Yuji; Fichman, Galit; Schneider, Joel P.
  3. ACS Applied Materials & Interfaces. 2021, Feb 24; 13(7): 8006-8014.
  1. 20.   Utilizing Fremy's Salt to Increase the Mechanical Rigidity of Supramolecular Peptide-Based Gel Networks
  2. Fichman, Galit; Schneider,Joel
  3. Frontiers in Bioengineering and Biotechnology . 2021, Jan 5; 8
  1. 21.   HIV-1 Gag protein with or without p6 specifically dimerizes on the viral RNA packaging signal
  2. Sarni, Samantha; Biswas,Banhi; Liu, Shuohui; Olson, Erik D.; Kitzrow, Jonathan P.; Rein,Alan; Wysocki, Vicki H.; Musier-Forsyth, Karin
  3. JOURNAL OF BIOLOGICAL CHEMISTRY. 2020, OCT 16; 295(42): 14391-14401.
  1. 22.   HIV-1 Maturation: Lessons Learned from Inhibitors
  2. Kleinpeter,Alex; Freed,Eric
  3. Viruses. 2020, SEP; 12(9):
  1. 23.   Multiphase Assembly of Small Molecule Microcrystalline Peptide Hydrogel Allows Immunomodulatory Combination Therapy for Long-Term Heart Transplant Survival
  2. Majumder, Poulami; Zhang, Yichuan; Iglesias, Marcos; Fan,Lixin; Kelley, James A; Andrews, Caroline; Patel,Nimit; Stagno,Jason; Oh, Byoung Chol; Furtmüller, Georg J; Lai,Christopher; Wang,Yun-Xing; Brandacher, Gerald; Raimondi, Giorgio; Schneider,Joel
  3. Small (Weinheim an der Bergstrasse, Germany). 2020, Aug 18; e2002791.
  1. 24.   Design, synthesis, in vitro and in vivo biological evaluation of 2-amino-3-aroylbenzo[b]furan derivatives as highly potent tubulin polymerization inhibitors
  2. Oliva, Paola; Romagnoli, Romeo; Manfredini, Stefano; Brancale, Andrea; Ferla, Salvatore; Hamel,Ernest; Ronca, Roberto; Maccarinelli, Federica; Giacomini, Arianna; Rruga, Fatlum; Mariotto, Elena; Viola, Giampietro; Bortolozzi, Roberta
  3. European journal of medicinal chemistry. 2020, AUG 15; 200: 112448.
  1. 25.   Opportunities and challenges for the clinical translation of structuredDNAassemblies as gene therapeutic delivery and vaccine vectors
  2. Dobrovoskaia, Marina A.; Bathe, Mark
  3. Wiley interdisciplinary reviews. Nanomedicine and nanobiotechnology. 2020, Jul 15;
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