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Research paper | Open Access

Molecular networking reveals indole diterpenoids from the marine-derived fungus Penicillium sp. N4-3

Min Chen1( )Bao-Cong Hao1Xia-Hao Zhu1Li-Kui Zhang1Yao-Yao Zheng2,3Xiao-Jian Zhou1Till F. Schäberle4,5,6Li Shen7Chang-Yun Wang2,3( )Yang Liu4,5( )
Marine Science & Technology Institute, College of Environmental Science & Engineering, Yangzhou University, 196#, Huayang West Street, Yangzhou 225127, China
Key Laboratory of Marine Drugs, The Ministry of Education of China, Institute of Evolution & Marine Biodiversity, School of Medicine and Pharmacy, Ocean University of China, Qingdao 266003, China
Laboratory for Marine Drugs and Bioproducts, Qingdao National Laboratory for Marine Science and Technology, Qingdao 266237, China
Institute for Insect Biotechnology, Justus-Liebig-University Giessen, 35392 Giessen, Germany
Fraunhofer Institute for Molecular Biology and Applied Ecology (IME), Branch for Bioresources, 35392 Giessen, Germany
German Center for Infection Research (DZIF), Partner Site Giessen-Marburg-Langen, 35392 Giessen, Germany
Jiangsu Key Laboratory of Integrated Traditional Chinese and Western Medicine for Prevention and Treatment of Senile Diseases, Medical College, Yangzhou University, Yangzhou 225001, China

Edited by Chengchao Chen.

Min Chen and Bao-Cong Hao contributed equally to this article.

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Abstract

MS/MS-based molecular networking is an effective strategy to rapidly dereplicate known compounds and to guide the discovery process for new and novel natural products. In the present study, the chemical diversity of indole diterpenoids from the marine-derived fungus Penicillium sp. N4-3 was investigated using molecular networking techniques. Guided by this information, targeted isolation resulted in two new indole diterpenoids shearinines R and S (1, 2) and an oxidative artifact shearinine T (3), together with the verification of two known analogs (4, 5). Furthermore, five indole diterpenoids (610), including three putatively new ones, shearinines U−W (6, 9, 10), were predicted from the molecular ion cluster by the combination of GNPS molecular networking and manual analysis of MS/MS fragmentation clusters. Shearinines T (3) and W (10) are characterized by an oxidative cleavage of the C-2–C-18 double bond. Feature fragment ions of these shearinines revealed two type of dominant ions related to the indole moiety and the breaking of C-9 side chain or Ring Ⅰ. Compound 1 showed antibacterial activities against a panel of pathogenic bacteria with IC50 values ranging from 6.34 to 47.96 μg/mL and inhibited the growth of the human hepatic (HepG2) and gastric (SGC-7901) cancer cells lines with IC50 values of 6.27 and 19.16 μg/mL, respectively.

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Marine Life Science & Technology
Pages 302-312

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Cite this article:
Chen M, Hao B-C, Zhu X-H, et al. Molecular networking reveals indole diterpenoids from the marine-derived fungus Penicillium sp. N4-3. Marine Life Science & Technology, 2025, 7(2): 302-312. https://doi.org/10.1007/s42995-024-00274-6

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Received: 22 December 2023
Accepted: 29 November 2024
Published: 07 April 2025
© The Author(s) 2025

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