A single residue can modulate nanocage assembly in salt dependent ferritin
Cage forming proteins have numerous potential applications in biomedicine and biotechnology, where the iron storage ferritin is a widely used example. However, controlling ferritin cage assembly/disassembly remains challenging, typically requiring extreme conditions incompatible with many desirable...
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Veröffentlicht in: | Nanoscale 2021-07, Vol.13 (27), p.11932-11942 |
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Sprache: | eng |
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Zusammenfassung: | Cage forming proteins have numerous potential applications in biomedicine and biotechnology, where the iron storage ferritin is a widely used example. However, controlling ferritin cage assembly/disassembly remains challenging, typically requiring extreme conditions incompatible with many desirable cargoes, particularly for more fragile biopharmaceuticals. Recently, a ferritin from the hyperthermophile bacterium
Thermotoga maritima
(TmFtn) has been shown to have reversible assembly under mild conditions, offering greater potential biocompatibility in terms of cargo access and encapsulation. Like
Archeoglobus fulgidus
ferritin (AfFtn), TmFtn forms 24mer cages mediated by metal ions (Mg
2+
). We have solved the crystal structure of the wild type TmFtn and several mutants displaying different assembly/disassembly properties. These data combined with other biophysical studies allow us to suggest candidate interfacial amino acids crucial in controlling assembly. This work deepens our understanding of how these ferritin complexes assemble and is a useful step towards production of triggerable ferritins in which these properties can be finely designed and controlled.
Modifications to a protein cage whose assembly depends on the presence of metal ions can modulate the extent of its dependence and in some cases convert the assembly to be salt independent. |
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ISSN: | 2040-3364 2040-3372 |
DOI: | 10.1039/d1nr01632f |