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环肽G4CP2通过干扰GAL4转录活性来调节酵母中的半乳糖代谢。

The cyclic peptide G4CP2 enables the modulation of galactose metabolism in yeast by interfering with GAL4 transcriptional activity.

作者信息

Rosa Stefano, Tagliani Andrea, Bertaso Chiara, Tadini Luca, Visentin Cristina, Gourlay Louise Jane, Pricl Sabrina, Feni Lucia, Pellegrino Sara, Pesaresi Paolo, Masiero Simona

机构信息

Department of Biosciences, Università degli Studi di Milano, Milan, Italy.

Molecular Biology and Nanotechnology Laboratory (MolBNL@Units), DEA, University of Trieste, Trieste, Italy.

出版信息

Front Mol Biosci. 2023 Mar 1;10:1017757. doi: 10.3389/fmolb.2023.1017757. eCollection 2023.

Abstract

Genetically-encoded combinatorial peptide libraries are convenient tools to identify peptides to be used as therapeutics, antimicrobials and functional synthetic biology modules. Here, we report the identification and characterization of a cyclic peptide, G4CP2, that interferes with the GAL4 protein, a transcription factor responsible for the activation of galactose catabolism in yeast and widely exploited in molecular biology. G4CP2 was identified by screening CYCLIC, a Yeast Two-Hybrid-based combinatorial library of cyclic peptides developed in our laboratory. G4CP2 interferes with GAL4-mediated activation of galactose metabolic enzymes both when expressed intracellularly, as a recombinant peptide, and when provided exogenously, as a chemically-synthesized cyclic peptide. Our results support the application of G4CP2 in microbial biotechnology and, additionally, demonstrate that CYCLIC can be used as a tool for the rapid identification of peptides, virtually without any limitations with respect to the target protein. The possible biotechnological applications of cyclic peptides are also discussed.

摘要

基因编码组合肽文库是用于鉴定可作为治疗药物、抗菌剂和功能性合成生物学模块的肽的便捷工具。在此,我们报告了一种环肽G4CP2的鉴定和表征,该环肽可干扰GAL4蛋白,GAL4蛋白是一种转录因子,负责酵母中半乳糖分解代谢的激活,并且在分子生物学中被广泛应用。通过筛选CYCLIC鉴定出G4CP2,CYCLIC是我们实验室开发的基于酵母双杂交的环肽组合文库。当作为重组肽在细胞内表达时,以及作为化学合成环肽外源提供时,G4CP2均会干扰GAL4介导的半乳糖代谢酶的激活。我们的结果支持G4CP2在微生物生物技术中的应用,此外,还证明CYCLIC可作为快速鉴定肽的工具,实际上对靶蛋白几乎没有任何限制。本文还讨论了环肽可能的生物技术应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fcd1/10014601/eb4baf5eb215/fmolb-10-1017757-g001.jpg

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