Assembling membraneless organelles from de novo designed proteins

Author:

Hilditch Alexander T.ORCID,Romanyuk AndreyORCID,Cross Stephen J.ORCID,Obexer RichardORCID,McManus Jennifer J.ORCID,Woolfson Derek N.ORCID

Abstract

AbstractRecent advances in de novo protein design have delivered a diversity of discrete de novo protein structures and complexes. A new challenge for the field is to use these designs directly in cells to intervene in biological processes and augment natural systems. The bottom-up design of self-assembled objects such as microcompartments and membraneless organelles is one such challenge. Here we describe the design of genetically encoded polypeptides that form membraneless organelles in Escherichia coli. To do this, we combine de novo α-helical sequences, intrinsically disordered linkers and client proteins in single-polypeptide constructs. We tailor the properties of the helical regions to shift protein assembly from arrested assemblies to dynamic condensates. The designs are characterized in cells and in vitro using biophysical methods and soft-matter physics. Finally, we use the designed polypeptide to co-compartmentalize a functional enzyme pair in E. coli, improving product formation close to the theoretical limit.

Funder

Leverhulme Trust

RCUK | Biotechnology and Biological Sciences Research Council

RCUK | Engineering and Physical Sciences Research Council

EC | Horizon 2020 Framework Programme

Publisher

Springer Science and Business Media LLC

Subject

General Chemical Engineering,General Chemistry

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