Protein engineering in the computational age: An open source framework for exploring mutational landscapes in silico

Author:

Bamezai Shirin1,Maresca di Serracapriola Giovanni1,Morris Freya1,Hildebrandt Rasmus2,Amil Marc Augustine Sojerido1,Ledesma‐Amaro Rodrigo1ORCID,

Affiliation:

1. Department of Bioengineering and Imperial College Centre for Synthetic Biology Imperial College London London UK

2. Faculty of Natural Sciences Imperial College London London UK

Abstract

AbstractThe field of protein engineering has seen tremendous expansion in the last decade, with researchers developing novel proteins with specialised functionalities for a range of uses, from drug discovery to industrial biotechnology. The emergence of computational tools and high‐throughput screening technology has substantially sped up the process of protein engineering. However, much of the expertise required to engage in such projects is still concentrated in the hands of a few specialised individuals, including computational biologists and structural biochemists. The international Genetically Engineered Machine (iGEM) competition represents a platform for undergraduate students to innovate in synthetic biology. Yet, due to their complexity, arduous protein engineering projects are hindered by the resources available and strict timelines of the competition. The authors highlight how the 2022 iGEM Team, ‘Sporadicate’, set out to develop InFinity 1.0, a computational framework for increased accessibility to effective protein engineering, hoping to increase awareness and accessibility to novel in silico tools.

Publisher

Institution of Engineering and Technology (IET)

Subject

General Engineering

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