Nano-caged Enzymes with Enhanced Catalytic Activity and Increased Stability against Protease Digestion HY Zhao Zhao, Jinglin Fu, Soma Dhakal, Alexander Johnson-Buck, Minghui Liu ... NATURE COMMUNICATIONS 7, 2016 | 435 | 2016 |
Organizing DNA origami tiles into larger structures using preformed scaffold frames Z Zhao, Y Liu, H Yan Nano letters 11 (7), 2997-3002, 2011 | 240 | 2011 |
Encapsulation of gold nanoparticles in a DNA origami cage Z Zhao, EL Jacovetty, Y Liu, H Yan Angewandte Chemie 123 (9), 2089-2092, 2011 | 187 | 2011 |
A route to scale up DNA origami using DNA tiles as folding staples Z Zhao, H Yan, Y Liu Angewandte Chemie 8 (122), 1456-1459, 2010 | 155 | 2010 |
Glutaraldehyde cross-linking of oligolysines coating DNA origami greatly reduces susceptibility to nuclease degradation FM Anastassacos, Z Zhao, Y Zeng, WM Shih Journal of the American Chemical Society 142 (7), 3311-3315, 2020 | 139 | 2020 |
Assembly of multienzyme complexes on DNA nanostructures J Fu, YR Yang, S Dhakal, Z Zhao, M Liu, T Zhang, NG Walter, H Yan Nature protocols 11 (11), 2243-2273, 2016 | 123 | 2016 |
Interconnecting gold islands with DNA origami nanotubes B Ding, H Wu, W Xu, Z Zhao, Y Liu, H Yu, H Yan Nano letters 10 (12), 5065-5069, 2010 | 121 | 2010 |
Precise pitch-scaling of carbon nanotube arrays within three-dimensional DNA nanotrenches W Sun, J Shen, Z Zhao, N Arellano, C Rettner, J Tang, T Cao, Z Zhou, ... Science 368 (6493), 874-877, 2020 | 116 | 2020 |
Site-specific synthesis and in situ immobilization of fluorescent silver nanoclusters on DNA nanoscaffolds by use of the Tollens reaction A Mathew Angew. Chem. Int. Ed 50, 4176-4179, 2011 | 114 | 2011 |
DNA-corralled nanodiscs for the structural and functional characterization of membrane proteins and viral entry Z Zhao, M Zhang, JM Hogle, WM Shih, G Wagner, ML Nasr Journal of the American Chemical Society 140 (34), 10639-10643, 2018 | 80 | 2018 |
DNA origami templated self-assembly of discrete length single wall carbon nanotubes Z Zhao, Y Liu, H Yan Organic & biomolecular chemistry 11 (4), 596-598, 2013 | 58 | 2013 |
Complex multicomponent patterns rendered on a 3D DNA-barrel pegboard SFJ Wickham, A Auer, J Min, N Ponnuswamy, JB Woehrstein, F Schueder, ... Nature communications 11 (1), 5768, 2020 | 42 | 2020 |
Self-assembly of DNA rings from scaffold-free DNA tiles Y Yang, Z Zhao, F Zhang, J Nangreave, Y Liu, H Yan Nano letters 13 (4), 1862-1866, 2013 | 31 | 2013 |
Tip induced fluorescence quenching for nanometer optical and topographical resolution O Schulz, Z Zhao, A Ward, M Koenig, F Koberling, Y Liu, J Enderlein, ... Optical Nanoscopy 2, 1-8, 2013 | 22 | 2013 |
Nanocaged enzymes with enhanced catalytic activity and increased stability J Fu, Z Zhao, N Woodbury, H Yan US Patent 10,669,534, 2020 | 10 | 2020 |
Nanocaged enzymes with enhanced catalytic activity and increased stability against protease digestion. Nat Commun. 2016; 7: 10619 Z Zhao, J Fu, S Dhakal, A Johnson-Buck, M Liu, T Zhang, NW Woodbury, ... | 7 | |
Functional DNA nanomaterials Z Zhao Arizona State University, 2013 | 2 | 2013 |
Nanocaged enzymes with enhanced catalytic activity and increased stability J Fu, Z Zhao, N Woodbury, H Yan US Patent 12,077,750, 2024 | 1 | 2024 |
Covalently Circularized Nanodiscs: EM and NMR Applications ML Nasr, J Simon, Z Zhao, M Strauss, W Shih, J Hogle, G Wagner Biophysical Journal 112 (3), 305a, 2017 | 1 | 2017 |
Nanocaged enzymes with enhanced catalytic activity and increased stability J Fu, Z Zhao, N Woodbury, H Yan US Patent App. 18/481,955, 2024 | | 2024 |