Metal ion–regulated assembly of designed modular protein cages

Author:

Aupič Jana1ORCID,Lapenta Fabio12ORCID,Strmšek Žiga1ORCID,Merljak Estera13ORCID,Plaper Tjaša13,Jerala Roman12ORCID

Affiliation:

1. Department of Synthetic Biology and Immunology, National Institute of Chemistry, Hajdrihova 19, SI-1000 Ljubljana, Slovenia.

2. EN-FIST Centre of Excellence, Trg OF 13, SI-1000 Ljubljana, Slovenia.

3. Interdisciplinary Doctoral Programme in Biomedicine, University of Ljubljana, Kongresni trg 12, SI-1000 Ljubljana, Slovenia.

Abstract

Coiled-coil (CC) dimers are versatile, customizable building modules for the design of diverse protein architectures unknown in nature. Incorporation of dynamic self-assembly, regulated by a selected chemical signal, represents an important challenge in the construction of functional polypeptide nanostructures. Here, we engineered metal binding sites to render an orthogonal set of CC heterodimers Zn(II)-responsive as a generally applicable principle. The designed peptides assemble into CC heterodimers only in the presence of Zn(II) ions, reversibly dissociate by metal ion sequestration, and additionally act as pH switches, with low pH triggering disassembly. The developed Zn(II)-responsive CC set is used to construct programmable folding of CC-based nanostructures, from protein triangles to a two-chain bipyramidal protein cage that closes and opens depending on the metal ion. This demonstrates that dynamic self-assembly can be designed into CC-based protein cages by incorporation of metal ion–responsive CC building modules that act as conformational switches and that could also be used in other contexts.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Multidisciplinary

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