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基于快速流动的翻译后修饰肽和蛋白质的合成:以MYC的反式激活结构域为例

Rapid flow-based synthesis of post-translationally modified peptides and proteins: a case study on MYC's transactivation domain.

作者信息

Williams Elyse T, Schiefelbein Kevin, Schuster Matthias, Ahmed Ikhlas M M, De Vries Marije, Beveridge Rebecca, Zerbe Oliver, Hartrampf Nina

机构信息

Department of Chemistry, University of Zurich Winterthurerstrasse 190 8057 Zurich Switzerland

Department for Pure and Applied Chemistry, University of Strathclyde 295 Cathedral St Glasgow G1 1XL UK.

出版信息

Chem Sci. 2024 May 7;15(23):8756-8765. doi: 10.1039/d4sc00481g. eCollection 2024 Jun 12.

Abstract

Protein-protein interactions of c-Myc (MYC) are often regulated by post-translational modifications (PTMs), such as phosphorylation, and crosstalk thereof. Studying these interactions requires proteins with unique PTM patterns, which are challenging to obtain by recombinant methods. Standard peptide synthesis and native chemical ligation can produce such modified proteins, but are time-consuming and therefore typically limited to the study of individual PTMs. Herein, we report the development of flow-based methods for the rapid synthesis of phosphorylated MYC sequences (up to 84 AA), and demonstrate the versatility of this approach for the incorporation of other PTMs ( -methylation, sulfation, acetylation, glycosylation) and combinations thereof. Peptides containing up to seven PTMs and phosphorylation at up to five sites were successfully prepared and isolated in high yield and purity. We further produced ten PTM-decorated analogues of the MYC Transactivation Domain (TAD) to screen for binding to the tumor suppressor protein, Bin1, using heteronuclear NMR and native mass spectrometry. We determined the effects of phosphorylation and glycosylation on the strength of the MYC:Bin1 interaction, and reveal an influence of MYC sequence length on binding. Our platform for the rapid synthesis of MYC sequences up to 84 AA with distinct PTM patterns thus enables the systematic study of PTM function at a molecular level, and offers a convenient way for expedited screening of constructs.

摘要

c-Myc(MYC)的蛋白质-蛋白质相互作用通常受翻译后修饰(PTM)调控,如磷酸化及其相互作用。研究这些相互作用需要具有独特PTM模式的蛋白质,而通过重组方法获得这些蛋白质具有挑战性。标准肽合成和天然化学连接可产生此类修饰蛋白,但耗时较长,因此通常仅限于对单个PTM的研究。在此,我们报告了基于流动的方法用于快速合成磷酸化MYC序列(长达84个氨基酸),并证明了该方法在掺入其他PTM(甲基化、硫酸化、乙酰化、糖基化)及其组合方面的通用性。成功制备并高产率、高纯度地分离出含有多达七个PTM且在多达五个位点磷酸化的肽。我们还制备了十个经PTM修饰的MYC反式激活结构域(TAD)类似物,使用异核核磁共振和天然质谱筛选其与肿瘤抑制蛋白Bin1的结合。我们确定了磷酸化和糖基化对MYC:Bin1相互作用强度的影响,并揭示了MYC序列长度对结合的影响。我们用于快速合成长达84个氨基酸且具有独特PTM模式的MYC序列的平台,从而能够在分子水平上系统研究PTM功能,并为快速筛选构建体提供了一种便捷方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/94aa/11168107/1274997ae3bc/d4sc00481g-f1.jpg

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