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Synthetic Protein Circuits and Devices Based on Reversible Protein-Protein Interactions: An Overview

期刊

LIFE-BASEL
卷 11, 期 11, 页码 -

出版社

MDPI
DOI: 10.3390/life11111171

关键词

synthetic biology; protein circuits; protein-protein interactions; combinatorial libraries; peptides

资金

  1. University of Milan through the APC initiative
  2. EU Horizon 2020-EU.1.2 Future and Emerging Technologies (FET) open research and innovation action [828940]
  3. MIUR (Ministero dell'Universita e della Ricerca)-PRIN (Progetti di Ricerca di Rilevante Interesse Nazionale) [20173LBZM2_005]

向作者/读者索取更多资源

Protein-protein interactions play a key role in regulating cell physiology and metabolism. By utilizing protein domains in genetic circuits, synthetic biology has enabled the design of circuits that can impact transcriptional outputs and cellular metabolism, with potential applications in biosensing and diagnostics. Additionally, engineered PPIs can be utilized in the development of new drugs targeting specific cellular and extracellular proteins.
Protein-protein interactions (PPIs) contribute to regulate many aspects of cell physiology and metabolism. Protein domains involved in PPIs are important building blocks for engineering genetic circuits through synthetic biology. These domains can be obtained from known proteins and rationally engineered to produce orthogonal scaffolds, or computationally designed de novo thanks to recent advances in structural biology and molecular dynamics prediction. Such circuits based on PPIs (or protein circuits) appear of particular interest, as they can directly affect transcriptional outputs, as well as induce behavioral/adaptational changes in cell metabolism, without the need for further protein synthesis. This last example was highlighted in recent works to enable the production of fast-responding circuits which can be exploited for biosensing and diagnostics. Notably, PPIs can also be engineered to develop new drugs able to bind specific intra- and extra-cellular targets. In this review, we summarize recent findings in the field of protein circuit design, with particular focus on the use of peptides as scaffolds to engineer these circuits.

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