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螺环诺利德A-D的发现,一种用于肺癌化疗先导物的I/III型杂合聚酮螺环大环内酯类化合物。

Discovery of Spirosnuolides A-D, Type I/III Hybrid Polyketide Spiro-Macrolides for a Chemotherapeutic Lead against Lung Cancer.

作者信息

Huynh Thanh-Hau, Jang Sung Chul, Ban Yeon Hee, Lee Eun-Young, Kim Taeho, Kang Ilnam, An Joon Soo, Kang Sangwook, Han Jaeho, Kwon Yun, Oh Daehyun, Park Hyeung-Geun, Cho Jang-Cheon, Jang Jichan, Oh Ki-Bong, Nam Sang-Jip, Lee Sang Kook, Oh Dong-Chan

机构信息

Natural Products Research Institute, College of Pharmacy, Seoul National University, Seoul 08826, Republic of Korea.

Department of Molecular Bioscience, College of Biomedical Science, Kangwon National University, Chuncheon 24341, Republic of Korea.

出版信息

JACS Au. 2024 Dec 10;4(12):4821-4832. doi: 10.1021/jacsau.4c00803. eCollection 2024 Dec 23.

Abstract

Four new macrolides, spirosnuolides A-D (-, respectively), were discovered from the termite nest-derived sp. INHA29. Spirosnuolides A-D are 18-membered macrolides sharing an embedded [6,6]-spiroketal functionality inside the macrocycle and are conjugated with structurally uncommon side chains featuring cyclopentenone, 1,4-benzoquinone, hydroxyfuroic acid, or butenolide moieties. Structure elucidation was achieved using a combination of spectroscopic analyses, multiple chemical derivatizations (methylation, methanolysis, Luche reduction, and Mosher's reaction), X-ray diffraction analysis, and computational ECD calculations. Interestingly, genome sequencing analysis suggests that spirosnuolides were biosynthesized through a rare type I/III hybrid polyketide synthase. Importantly, spirosnuolide B displayed potent antiproliferative effects against various cancer cell lines at nanomolar concentrations, particularly against HCC827 cells, an EGFR mutant non-small-cell lung cancer (NSCLC) cell line, with a high safety index value. Based on studies, the antiproliferative mechanism of spirosnuolide B involved the activation of AMPK signaling, leading to cell cycle arrest and apoptosis in HCC827 cells. Its potent efficacy was also proven by the effective inhibition of tumor growth in mouse xenograft studies. Moreover, cotreatment with spirosnuolide B and gefitinib, synergistically enhanced the antiproliferative activity and apoptosis, suggesting a potential strategy to overcome gefitinib resistance in EGFR mutant NSCLC.

摘要

从源自白蚁巢的链霉菌属INHA29中发现了四种新的大环内酯类化合物,即螺旋诺利德A - D(分别为 - )。螺旋诺利德A - D是18元大环内酯类化合物,大环内含有一个嵌入式的[6,6]-螺环缩酮官能团,并与具有环戊烯酮、1,4 - 苯醌、羟基呋喃酸或丁烯内酯部分的结构不常见的侧链共轭。通过光谱分析、多种化学衍生化反应(甲基化、甲醇解、卢奇还原和莫舍尔反应)、X射线衍射分析以及计算ECD计算相结合的方法完成了结构解析。有趣的是,基因组测序分析表明螺旋诺利德是通过一种罕见的I/III型混合聚酮合酶生物合成的。重要的是,螺旋诺利德B在纳摩尔浓度下对多种癌细胞系显示出强大的抗增殖作用,特别是对HCC827细胞,一种表皮生长因子受体(EGFR)突变的非小细胞肺癌(NSCLC)细胞系,具有高安全指数值。基于研究,螺旋诺利德B的抗增殖机制涉及AMPK信号通路的激活,导致HCC827细胞的细胞周期停滞和凋亡。其强大的功效也在小鼠异种移植研究中对肿瘤生长的有效抑制得到了证实。此外,螺旋诺利德B与吉非替尼联合治疗可协同增强抗增殖活性和凋亡,提示这是一种克服EGFR突变NSCLC中吉非替尼耐药的潜在策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/48f4/11672126/5bea7ce132de/au4c00803_0001.jpg

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