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March 26, 2026Chemical Reviews0 citations

In Cellulo Fabrication of Supramolecular Protein Assemblies

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HYHongru YangCSChang Woo SongXLX. L. Lu

Key Points

  • To provide an overview of supramolecular protein assemblies and the implications of their structure and fabrication methods.
  • Review of major classes of natural and engineered protein assemblies.
  • Comparison of cellular reactors and their impact on assembly outcomes.
  • Summary of engineering strategies for modifying protein assemblies.
  • Identified diverse protein assemblies with unique structural and material properties.
  • Highlighted the influence of cellular environments on assembly outcomes.
  • Outlined broad applications across biology, biomedicine, and beyond.

Abstract

In cellulo protein assemblies, spanning protein cages, filaments, crystals, and biomolecular condensates, provide cells with modular strategies to package, organize, and regulate biomolecules and biochemical reactions. Their genetic encodability, structural diversity, and tunable material properties have also made them attractive biomaterials, where in cellulo fabrication has underpinned their precise assembly and broad applicability. This review surveys major classes of natural and engineered assemblies fabricated in cellulo, with particular emphasis on how their structure, chemistry, and material state shape functions. We compare diverse cellular reactors and outline how intracellular milieu, post-translational modifications, and folding/assembly machinery influence assembly outcomes. Engineering strategies for modifying the assemblies are summarized and mapped onto broad applications across fundamental biology, biomedicine, and nonbiological fields. Lastly, we highlight existing opportunities for engineering and designing in cellulo protein assemblies. Through this review, we hope to give a comprehensive overview of this exciting and rapidly growing field and share our perspective on the possible future directions.

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Cite This Study

Yang et al. (2026) studied this question.

synapsesocial.com/papers/69c4cd49fdc3bde448919751https://doi.org/10.1021/acs.chemrev.5c01095
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