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Updated: Aug 19, 2026

On-Chip Crystallization and Large-Scale Serial Diffraction at Room Temperature
Published on: March 11, 2022
Direct Visualization of Orientation Competition in Protein Epitaxial Crystallization
Yuhui Wei1,2,3, Daniel M Czajkowsky4, Wei Zheng2,3
1The Interdisciplinary Research Center, Shanghai Synchrotron Radiation Facility, Shanghai Advanced Research Institute, Chinese Academy of Sciences, Shanghai, China.
None:
The formation of two-dimensional protein crystallites on solid surfaces is crucial in both natural biological processes and bottom-up nanofabrication. However, direct molecular-level insight into the dynamic evolution of epitaxial interfaces has remained challenging. Here, using in situ atomic force microscopy, we reveal the two-dimensional crystallization dynamics of streptavidin on muscovite mica with single-molecule resolution. We directly imaged the initial formation of multiple orientation domains during the crystallization process, a direct consequence of epitaxial matching to the three-fold symmetry of the mica lattice. This metastable poly-domain structure then evolves into a single-oriented crystallite through two coexisting classical ripening pathways, i. e. Ostwald ripening and Smoluchowski-type coalescence. The dominance of a single domain orientation arises from a competitive selection process during ripening, in which the initially largest domain ultimately consumes the neighboring domains of other orientations. Our work establishes a paradigm of domain coarsening in biomolecular epitaxy, providing a solid foundation for the rational design of functional bio-nano interfaces.

