Supramolecular Assembly of a Molecularly Engineered Protein and Polymer

Sikder, Amrita ; Ray, Debes ; Aswal, Vinod K. ; Ghosh, Suhrit (2019) Supramolecular Assembly of a Molecularly Engineered Protein and Polymer Chemistry – A European Journal, 25 (44). pp. 10464-10471. ISSN 0947-6539

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Official URL: http://doi.org/10.1002/chem.201901844

Related URL: http://dx.doi.org/10.1002/chem.201901844

Abstract

Programmable assembly of biomolecules is a fast growing research area that aims to emulate nature's elegance in creating numerous hierarchical self-assembled structures, which are responsible for unimaginably difficult biological functions. Protein assembly is a particularly challenging task, owing to their structural diversity, conformational heterogeneity, and high molecular weight. This article reveals the ability of a supramolecular structure-directing unit (SSDU) to regulate the entropically favourable supramolecular assembly of a covalently conjugated protein (bovine serum albumin (BSA)) to produce well-defined protein-decorated micelles with remarkably high thermal stability, suppression of the thermal denaturation of the protein, and retention of enzymatic activity. Furthermore, a SSDU-appended thermo-responsive poly(N-isopropylacrylamide) (PNIPAM) co-assembles with the SSDU–BSA conjugate because, in both cases, assembly was primarily driven by specific molecular recognition between the SSDUs. However, the resulting supramolecular protein–polymer conjugate exhibits distinctly different polymersome structure to that of the micellar particle produced by the protein-SSDU conjugate. In this case, the enzymatic activity can be significantly suppressed above the lower critical solution temperature of supramolecularly conjugated PNIPAM, possibly due to collapse of the de-solvated polymer chains on the protein surface.

Item Type:Article
Source:Copyright of this article belongs to John Wiley & Sons, Inc
ID Code:126074
Deposited On:17 Oct 2022 11:29
Last Modified:17 Oct 2022 11:29

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