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基于串联质谱的19,20-环氧细胞松弛素C代谢物谱分析揭示了C7位羟基对生物活性的重要性。

Tandem MS-Based Metabolite Profiling of 19,20-Epoxycytochalasin C Reveals the Importance of a Hydroxy Group at the C7 Position for Biological Activity.

作者信息

Kushwaha Manoj, Qayum Arem, Jain Shreyans K, Singh Jasvinder, Srivastava Amit Kumar, Srivastava Shubham, Sharma Nisha, Abrol Vidushi, Malik Ruchi, Singh Shashank K, Vishwakarma Ram A, Jaglan Sundeep

机构信息

Microbial Biotechnology Division, Indian Institute of Integrative Medicine (CSIR), Canal Road, Jammu 180001, India.

Department of Biotechnology, Guru Nanak Dev University, Amritsar 143001, Punjab, India.

出版信息

ACS Omega. 2021 Jan 25;6(5):3717-3726. doi: 10.1021/acsomega.0c05307. eCollection 2021 Feb 9.

Abstract

Seven cytochalasins, 19,20-epoxycytochalasin N, cytochalasin P1, deacetyl 19,20-epoxycytochalasin C, 19,20-epoxycytochalasin D, 19,20-epoxycytochalasin C, cytochalasin D, and cytochalasin C, were isolated from a fungal () crude extract. A cytotoxicity assay (sulforhodamine B) was performed on a series of cancer cell lines: HT-29, A-549, PC-3, HCT-116, SW-620, and MCF-7. Simultaneously, the liquid chromatography-mass spectrometry (LC-MS)/MS profile of 19,20-epoxycytochalasin C-treated cell lines revealed that 19,20-epoxycytochalasin C (/ 524.25) oxidized to a metabolite of / 522.25 Da (-2 Da (-2H) from 19,20-epoxycytochalasin C). Further chemical oxidation of 19,20-epoxycytochalasin C using the Dess-Martin reagent produced an identical metabolite. It has been noticed that the parent molecule (19,20-epoxycytochalasin C) showed an IC of 650 nM (on HT-29), whereas for the oxidized metabolite (/ 522.24) of 19,20-epoxycytochalasin C, the IC was >10 μM. It is clear that the parent molecule had 16 times higher cytotoxic potential as compared to the oxidized metabolite. The spectroscopic investigation indicated that the oxidation of the hydroxyl (-OH) group occurred at the C7 position in 19,20-epoxycyctochalsin C and led to the inactivation of 19,20-epoxycytochalasin C. Further, cell cycle analysis and histopathological evidence support the findings, and CDK2 could be a possible target of 19,20-epoxycyctochalasin C.

摘要

从一种真菌粗提物中分离出了七种细胞松弛素,分别是19,20 - 环氧细胞松弛素N、细胞松弛素P1、去乙酰基19,20 - 环氧细胞松弛素C、19,20 - 环氧细胞松弛素D、19,20 - 环氧细胞松弛素C、细胞松弛素D和细胞松弛素C。对一系列癌细胞系(HT - 29、A - 549、PC - 3、HCT - 116、SW - 620和MCF - 7)进行了细胞毒性测定(磺酰罗丹明B法)。同时,19,20 - 环氧细胞松弛素C处理的细胞系的液相色谱 - 质谱联用(LC - MS)/ MS图谱显示,19,20 - 环氧细胞松弛素C(/ 524.25)氧化为一种/ 522.25 Da的代谢物(比19,20 - 环氧细胞松弛素C少2 Da(-2H))。使用戴斯 - 马丁试剂对19,20 - 环氧细胞松弛素C进行进一步化学氧化产生了相同的代谢物。已经注意到,母体分子(19,20 - 环氧细胞松弛素C)在HT - 29细胞系上的IC50为650 nM,而对于19,20 - 环氧细胞松弛素C的氧化代谢物(/ 522.24),IC50大于10 μM。显然,母体分子的细胞毒性潜力比氧化代谢物高16倍。光谱研究表明,19,20 - 环氧细胞松弛素C中羟基(-OH)基团的氧化发生在C7位,导致19,20 - 环氧细胞松弛素C失活。此外,细胞周期分析和组织病理学证据支持了这些发现,并且细胞周期蛋白依赖性激酶2(CDK2)可能是19,20 - 环氧细胞松弛素C的一个潜在靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/019c/7876698/d8b2573c32c5/ao0c05307_0002.jpg

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