Suppr超能文献

从天然或重组蛋白质中无酶生化生产无缝N端到C端环化肽。

Enzyme-free biochemical production of seamlessly N-to-C cyclized peptides from natural or recombinant proteins.

作者信息

Behboodian Ali, Serebryany Eugene

机构信息

Department of Physiology & Biophysics, Renaissance School of Medicine, Stony Brook University, Stony Brook, NY, USA.

Laufer Center for Physical & Quantitative Biology, Stony Brook University, Stony Brook, NY, USA.

出版信息

bioRxiv. 2025 Aug 2:2025.07.31.667801. doi: 10.1101/2025.07.31.667801.

Abstract

Many naturally occurring or synthetic cyclic peptides are valuable as pharmaceuticals, but this stable and versatile class of molecules has not yet found applications beyond medicine. The main reason is the high cost of developing, producing, and altering these molecules via the gold-standard solid-phase synthesis methods. We focus on a class of cyclic peptides that have no disulfides, only canonical amino acids, and seamless peptide backbones. Known as orbitides or circular bacteriocins, such compounds are ribosomally synthesized and enzymatically cyclized by plants and bacteria. We report a simple method for producing them from naturally abundant proteins or from recombinantly expressed precursor polypeptides. The reaction proceeds under mild aqueous conditions, without the need for enzymes, and using only one chemical reagent, which is readily available. We demonstrate production of a 17-mer cyclic peptide from a wild-type human eye lens γ-crystallin and of a set of 10-residue cyclic peptides from recombinantly expressed polypeptide precursors. We investigate the effects of reaction conditions and sequence changes on reaction efficiency, identify the products by their complex mass spectrometry fragmentation patterns, and chromatographically separate linear and cyclic peptide forms. Our methodology opens the way to large-scale, cost-effective production of stable yet biodegradable, easily designable cyclic peptides for applications not only in medicine, but in areas like biotechnology, materials, agriculture, and pest control. It may also enable production of diverse cyclic peptide libraries from arbitrarily chosen natural protein sources.

摘要

许多天然存在的或合成的环肽作为药物很有价值,但这类稳定且通用的分子尚未在医学之外找到应用。主要原因是通过金标准固相合成方法开发、生产和改造这些分子的成本很高。我们关注一类无二硫键、仅含标准氨基酸且肽骨架无缝的环肽。这类化合物被称为轨道肽或环状细菌素,由植物和细菌通过核糖体合成并酶促环化。我们报告了一种从天然丰富的蛋白质或重组表达的前体多肽生产它们的简单方法。该反应在温和的水性条件下进行,无需酶,且仅使用一种容易获得的化学试剂。我们展示了从野生型人眼晶状体γ-晶状体蛋白生产一种17聚体环肽,以及从重组表达的多肽前体生产一组10残基环肽。我们研究了反应条件和序列变化对反应效率的影响,通过其复杂的质谱裂解模式鉴定产物,并通过色谱法分离线性和环肽形式。我们的方法为大规模、经济高效地生产稳定但可生物降解、易于设计的环肽开辟了道路,这些环肽不仅可用于医学,还可用于生物技术、材料、农业和害虫控制等领域。它还可能使从任意选择的天然蛋白质来源生产多样的环肽文库成为可能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e9ee/12324452/37f3e2908dcb/nihpp-2025.07.31.667801v1-f0001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验