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Foundations in biology

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Question 27

Synthetic protein nanocages are engineered macromolecular structures designed to mimic natural capsids for targeted drug delivery and metal-ion sequestration. A newly developed nanocage consists of multiple protein subunits assembling into a hollow spherical shell to isolate toxic zinc ions (Zn2+\text{Zn}^{2+}Zn2+) from the cytoplasm.

a.

A single engineered protein nanocage has a hollow inner cavity with a total volume of 320 nm3320\text{ nm}^3320 nm3.

This inner cavity can encapsulate a maximum of 250025002500 Zn2+\text{Zn}^{2+}Zn2+ ions.

The effective volume of a single Zn2+\text{Zn}^{2+}Zn2+ ion is 8.60×10−3 nm38.60 \times 10^{-3}\text{ nm}^38.60×10−3 nm3.

Calculate the volume of the inner cavity that is not occupied by Zn2+\text{Zn}^{2+}Zn2+ ions when the nanocage is at maximum capacity.

[2]
b.

Explain how the hydrophobic and hydrophilic interactions of the amino acid R-groups stabilize the folded, hollow shell structure of this protein nanocage in an aqueous environment.

[3]

Foundations in biology Questions

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