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诺他汀A的发现,一种含唑类的变形菌素,具有显著的细胞抑制和促凋亡活性。

Discovery of nostatin A, an azole-containing proteusin with prominent cytostatic and pro-apoptotic activity.

作者信息

Delawská Kateřina, Hájek Jan, Voráčová Kateřina, Kuzma Marek, Mareš Jan, Vicková Kateřina, Kádek Alan, Tučková Dominika, Gallob Filip, Divoká Petra, Moos Martin, Opekar Stanislav, Koch Lukas, Saurav Kumar, Sedlák David, Novák Petr, Urajová Petra, Dean Jason, Gažák Radek, Niedermeyer Timo J H, Kameník Zdeněk, Šimek Petr, Villunger Andreas, Hrouzek Pavel

机构信息

Centre Algatech, Institute of Microbiology, Czech Academy of Sciences, Novohradká 237, Centre Algatech, Institute of Microbiology, Czech Academy of Sciences, 379 01 Třeboň, Czech Republic.

Department of Medical Biology, Faculty of Science, University of South Bohemia, Branišovská 1645/31a, 370 05 České Budějovice, Czech Republic.

出版信息

Org Biomol Chem. 2025 Jan 2;23(2):449-460. doi: 10.1039/d4ob01395f.

Abstract

Ribosomally synthesized and post-translationally modified peptides (RiPPs) are intriguing compounds with potential pharmacological applications. While many RiPPs are known as antimicrobial agents, a limited number of RiPPs with anti-proliferative effects in cancer cells are available. Here we report the discovery of nostatin A (NosA), a highly modified RiPP belonging among nitrile hydratase-like leader peptide RiPPs (proteusins), isolated from a terrestrial cyanobacterium sp. Its structure was established based on the core peptide sequence encoded in the biosynthetic gene cluster recovered from the producing strain and subsequent detailed nuclear magnetic resonance and high-resolution mass spectrometry analyses. NosA, composed of a 30 amino-acid peptide core, features a unique combination of moieties previously not reported in RiPPs: the simultaneous presence of oxazole/thiazole heterocycles, dehydrobutyrine/dehydroalanine residues, and a sactionine bond. NosA includes an isobutyl-modified proline residue, highly unusual in natural products. NosA inhibits proliferation of multiple cancer cell lines at low nanomolar concentration while showing no hemolysis. It induces cell cycle arrest in S-phase followed by mitochondrial apoptosis employing a mechanism different from known tubulin binding and DNA damaging compounds. NosA also inhibits strains while it exhibits no effect in other tested bacteria or yeasts. Due to its novel structure and selective bioactivity, NosA represents an excellent candidate for combinatorial chemistry approaches leading to development of novel NosA-based lead compounds.

摘要

核糖体合成及翻译后修饰肽(RiPPs)是一类具有潜在药理学应用价值的有趣化合物。虽然许多RiPPs作为抗菌剂为人所知,但在癌细胞中具有抗增殖作用的RiPPs数量有限。在此,我们报告了从一种陆生蓝藻中分离出的诺他汀A(NosA)的发现,它是一种高度修饰的RiPP,属于腈水合酶样前导肽RiPPs(变形菌素)。其结构是基于从生产菌株中回收的生物合成基因簇中编码的核心肽序列以及随后详细的核磁共振和高分辨率质谱分析确定的。NosA由一个30个氨基酸的肽核心组成,具有RiPPs中以前未报道过的独特基团组合:同时存在恶唑/噻唑杂环、脱氢丁氨酸/脱氢丙氨酸残基和一个沙克辛键。NosA包含一个异丁基修饰的脯氨酸残基,这在天然产物中非常罕见。NosA在低纳摩尔浓度下可抑制多种癌细胞系的增殖,同时不表现出溶血现象。它通过一种不同于已知微管蛋白结合和DNA损伤化合物的机制诱导细胞周期停滞在S期,随后引发线粒体凋亡。NosA还能抑制某些菌株,而对其他测试细菌或酵母没有影响。由于其新颖的结构和选择性生物活性,NosA是组合化学方法开发新型基于NosA的先导化合物的优秀候选物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4198/11583998/41585ccee598/d4ob01395f-f1.jpg

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