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User Publications 2022

  1. Revealing Temperature-dependent Polymer Aggregation in Solution with Small-angle X-ray Scattering
    Abdelsamie, M.; Chaney, T.P.; Yan, H.; Schneider, S.A.; Ayhan, I.A.; Gomez, E.D.; Reynolds, J.R.; Toney, M.F. J. Mater. Chem. A 10, (2022).

  2. Viscoelastic analysis of mussel threads reveals energy dissipative mechanisms.
    Areyano, M.; Valois, E.; Carvajal, I.Sanchez; Rajkovic, I.; Wonderly, W.R.; Kossa, A.; McMeeking, R.M.; Waite, H. J R Soc Interface 19, 20210828 (2022).

  3. Overcoming universal restrictions on metal selectivity by protein design.
    Choi, T.Su; Tezcan, A. Nature 603, 522-527 (2022).

  4. Design of a Flexible, Zn-Selective Protein Scaffold that Displays Anti-Irving-Williams Behavior.
    Choi, T.Su; Tezcan, A. J Am Chem Soc 144, 18090-18100 (2022).

  5. Stabilization of glucose-6-phosphate dehydrogenase oligomers enhances catalytic activity and stability of clinical variants.
    Garcia, A.Ann; Mathews, I.I.; Horikoshi, N.; Matsui, T.; Kaur, M.; Wakatsuki, S.; Mochly-Rosen, D. J Biol Chem 298, 101610 (2022).

  6. Formation Mechanism of Flower-like Polyacrylonitrile Particles
    Gong, H.; Ilavsky, J.; Kuzmenko, I.; Chen, S.; Yan, H.; Cooper, C.B.; Chen, G.; Chen, Y.; Chiong, J.A.; Jiang, Y.; Lai, J.C.; Zheng, Y.; Stone, K.H.; Huelsenbeck, L.; Giri, G.; Tok, J.B.H.; Bao, Z. J. Am. Chem. Soc. 144, (2022).

  7. Dynamic, Polymer-Integrated Crystals for Efficient, Reversible Protein Encapsulation.
    Han, K.; Na, Y.; Zhang, L.; Tezcan, A. J Am Chem Soc 144, 10139-10144 (2022).

  8. Hydrophilic nanoparticles that kill bacteria while sparing mammalian cells reveal the antibiotic role of nanostructures.
    Jiang, Y.; Zheng, W.; Tran, K.; Kamilar, E.; Bariwal, J.; Ma, H.; Liang, H. Nat Commun 13, 197 (2022).

  9. Assembly of ordered DNA-curli fibril complexes during Salmonella biofilm formation correlates with strengths of the type I interferon and autoimmune responses.
    Nicastro, L.K.; de Anda, J.; Jain, N.; Grando, K.C.M.; Miller, A.L.; Bessho, S.; Gallucci, S.; Wong, G.C.L.; Tükel, Ç. PLoS Pathog 18, e1010742 (2022).

  10. Conjugated Polyelectrolyte-based Ternary Exciton Funnels via Liposome Scaffolds
    Palmer, J.; Segura, C.J.; Matsushima, L.; Abrams, B.; Lee, H.W.; Ayzner, A.L. Mol. Syst. Des. Eng. 7, (2022).

  11. The Influence of Calcium Ions (Ca2+) on the Enzymatic Hydrolysis of Lipopolysaccharide Aggregates to Liberate Free Fatty Acids (FFA) in Aqueous Solution
    Pazol, J.; Weiss, T.M.; Martínez, C.D.; Quesada, O.; Nicolau, E. Jcis Open 7, (2022).

  12. Energy Transfer in Aqueous Light Harvesting Antennae Based on Brush-like Inter-Conjugated Polyelectrolyte Complexes.
    Pitch, G.M.; Matsushima, L.N.; Kraemer, Y.; Dailing, E.A.; Ayzner, A.L. Macromolecules 55, 10302-10311 (2022).

  13. From Protein Design to the Energy Landscape of a Cold Unfolding Protein.
    Pulavarti, S.V.S.R.K.; Maguire, J.B.; Yuen, S.; Harrison, J.S.; Griffin, J.; Premkumar, L.; Esposito, E.A.; Makhatadze, G.I.; Garcia, A.E.; Weiss, T.M.; Snell, E.H.; Kuhlman, B.; Szyperski, T. J Phys Chem B 126, 1212-1231 (2022).

  14. A round-robin approach provides a detailed assessment of biomolecular small-angle scattering data reproducibility and yields consensus curves for benchmarking.
    Trewhella, J.; Vachette, P.; Bierma, J.; Blanchet, C.; Brookes, E.; Chakravarthy, S.; Chatzimagas, L.; Cleveland, T.E.; Cowieson, N.; Crossett, B.; Duff, A.P.; Franke, D.; Gabel, F.; Gillilan, R.E.; Graewert, M.; Grishaev, A.; Guss, M.; Hammel, M.; Hopkins, J.; Huang, Q.; Hub, J.S.; Hura, G.L.; Irving, T.C.; Jeffries, C.Michael; Jeong, C.; Kirby, N.; Krueger, S.; Martel, A.; Matsui, T.; Li, N.; Pérez, J.; Porcar, L.; Prangé, T.; Rajkovic, I.; Rocco, M.; Rosenberg, D.J.; Ryan, T.M.; Seifert, S.; Sekiguchi, H.; Svergun, D.; Teixeira, S.; Thureau, A.; Weiss, T.M.; Whitten, A.E.; Wood, K.; Zuo, X. Acta Crystallogr D Struct Biol 78, 1315-1336 (2022).

  15. Histidine-Mediated Ion Specific Effects Enable Salt Tolerance of a Pore-Forming Marine Antimicrobial Peptide.
    Xian, W.; Hennefarth, M.R.; Lee, M.W.; Do, T.; Lee, E.Y.; Alexandrova, A.N.; Wong, G.C.L. Angew Chem Int Ed Engl 61, e202108501 (2022).