基本情報
- 所属
- 学習院大学 理学部 生命科学科 助教
- 学位
- 博士(薬科学)(2019年3月 東京大学)
- 研究者番号
- 10962988
- ORCID ID
https://orcid.org/0000-0002-7502-5072- J-GLOBAL ID
- 202201002402026891
- researchmap会員ID
- R000034538
経歴
6-
2023年4月 - 現在
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2022年4月 - 2023年3月
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2021年12月 - 2022年2月
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2019年6月 - 2021年11月
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2019年4月 - 2019年5月
学歴
4-
2016年4月 - 2019年3月
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2014年4月 - 2016年3月
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2012年4月 - 2014年3月
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2010年4月 - 2012年3月
委員歴
2-
2026年3月 - 現在
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2024年8月 - 現在
受賞
12主要な論文
42-
Chemical and Pharmaceutical Bulletin 73(8) 698-706 2025年8月15日 筆頭著者責任著者
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Journal of Natural Medicines 79(3) 465-476 2025年4月4日 招待有り筆頭著者最終著者責任著者Abstract Actinomycetes have produced a variety of bioactive secondary metabolites; however, discovering new actinobacterial natural products using conventional approaches has become increasingly challenging. Meanwhile, genomic studies of actinomycetes have revealed that numerous secondary metabolite biosynthetic gene clusters (SM-BGCs) remain untapped. Thus, utilizing these secondary metabolic pathways is expected to facilitate the discovery of new actinomycetes-derived natural products. In this review, I primarily describe our research on the utilization of these untapped actinobacterial SM-BGCs and the discovery of new secondary metabolites. First, I introduce our studies on the activation of silent SM-BGCs through the co-cultivation of various actinomycetes with mycolic acid-containing bacteria (MACB), which led to the identification of 20 actinobacterial secondary metabolites, including 16 new compounds. In the latter part, I describe our recent findings on arsenic-related secondary metabolism, which has been overlooked in model actinomycetes, including the identification of a novel organoarsenic natural product, and the elucidation of its unique biosynthetic strategy, which is independent of S-adenosylmethionine (SAM)-dependent enzymes. Graphical abstract
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Natural Product Reports 42(4) 663-671 2025年 筆頭著者責任著者We summarize recent research in the discovery and biosynthesis of bacterial organoarsenic natural products, providing unique chemical architecture and enzymologies.
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Phytochemistry Letters 63 54-59 2024年10月
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Journal of Natural Medicines 78(4) 908-918 2024年7月2日
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Chemical and Pharmaceutical Bulletin 72(6) 540-546 2024年6月12日
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Journal of Natural Medicines 78(3) 537-546 2024年3月22日
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Journal of the American Chemical Society 145(32) 17863-17871 2023年8月3日 筆頭著者責任著者
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Bioorganic & Medicinal Chemistry Letters 89 129323-129323 2023年6月
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ACS Chemical Biology 17(11) 3121-3130 2022年10月13日
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ACS Chemical Biology 17(10) 2936-2944 2022年9月16日Ribosomally synthesized and posttranslationally modified peptides (RiPPs) with polar-functionalized fatty acyl groups are a rarely found untapped class of natural products. Although polar-functionalized fatty-acylated RiPPs (PFARs) have potential as antimicrobial agents, the repertoire is still limited. Therefore, expanding the chemical space is expected to contribute to the development of pharmaceutical agents. In this study, we performed genome mining and stable isotope-guided comparative metabolomics to discover new PFAR natural products. We focused on the feature that PFARs incorporate l-arginine or l-lysine as the starter unit of the fatty acyl group and fed 13C6,15N4-l-arginine or 13C6,15N2-l-lysine to bacterial cultures. Metabolites were extracted and compared with those extracted from nonlabeled l-arginine or l-lysine fed cultures. We identified putative PFARs and successfully isolated solabiomycin A and B from Streptomyces lydicus NBRC 13 058 and albopeptin B from Streptomyces nigrescens HEK616, which contained a sulfoxide group in the labionin moiety. The gene disruption experiment indicated that solS, which encodes a putative flavin adenine dinucleotide (FAD)-nicotinamide adenine dinucleotide (phosphate) (NAD(P))-binding protein, is involved in the sulfoxidation of aryl sulfides. The solabiomycins showed antibacterial activity against Gram-positive bacteria, including Mycobacterium tuberculosis H37Rv with a minimum 95% inhibitory concentration (MIC95) of 3.125 μg/mL, suggesting their potential as antituberculosis agents.
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Nature Chemistry 12(9) 869-877 2020年7月27日
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Angewandte Chemie (International ed. in English) 59(10) 3988-3993 2020年3月2日C-S bond formation reactions are widely distributed in the biosynthesis of biologically active molecules, and thus have received much attention over the past decades. Herein, we report intramolecular C-S bond formation by a P450 monooxygenase, TleB, which normally catalyzes a C-N bond formation in teleocidin biosynthesis. Based on the proposed reaction mechanism of TleB, a thiol-substituted substrate analogue was synthesized and tested in the enzyme reaction, which afforded the unprecedented sulfur-containing thio-indolactam V, in addition to an unusual indole-fused 6/5/8-tricyclic product whose structure was determined by the crystalline sponge method. Interestingly, conformational analysis revealed that the SOFA conformation is stable in thio-indolactam V, in sharp contrast to the major TWIST form in indolactam V, resulting in differences in their biological activities.
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Organic letters 21(16) 6519-6522 2019年8月16日 筆頭著者Tenebrathin (1), a new C-5-substituted γ-pyrone with a nitroaryl side chain, was isolated from the rare actinomycete Streptoalloteichus tenebrarius NBRC 16177. The chemical structure of 1 was elucidated by a spectroscopic analysis using the crystalline sponge method of crystallization-free X-ray crystallography. The biosynthetic origin of the unusual C-5-substituted γ-pyrone in 1 was revealed by a 13C-labeling experiment. Compound 1 exhibited moderate cytotoxicity against several cancer cell lines and likely targets some protein kinases.
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Chemical and Pharmaceutical Bulletin 67(8) 775-777 2019年8月1日 筆頭著者
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Journal of Industrial Microbiology and Biotechnology 46(3-4) 363-374 2019年3月1日 筆頭著者Abstract Bacterial secondary metabolites (SM) are rich sources of drug leads, and in particular, numerous metabolites have been isolated from actinomycetes. It was revealed by recent genome sequence projects that actinomycetes harbor much more secondary metabolite-biosynthetic gene clusters (SM-BGCs) than previously expected. Nevertheless, large parts of SM-BGCs in actinomycetes are dormant and cryptic under the standard culture conditions. Therefore, a widely applicable methodology for cryptic SM-BGC activation is required to obtain novel SM. Recently, it was discovered that co-culturing with mycolic-acid-containing bacteria (MACB) widely activated cryptic SM-BGCs in actinomycetes. This “combined-culture” methodology (co-culture methodology using MACB as the partner of actinomycetes) is easily applicable for a broad range of actinomycetes, and indeed, 33 novel SM have been successfully obtained from 12 actinomycetes so far. In this review, the development, application, and mechanistic analysis of the combined-culture method were summarized.
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Journal of Natural Products 81(9) 2106-2110 2018年8月21日 筆頭著者
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Chemical and Pharmaceutical Bulletin 66(6) 660-667 2018年6月1日 筆頭著者
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The Journal of Antibiotics 71(7) 653-657 2018年3月14日 筆頭著者
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Organic Letters 19(18) 4992-4995 2017年9月7日 筆頭著者
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Natural Product Communications 11(7) 979-981 2016年7月1日 筆頭著者Combined-culture is a fermentation method which efficiently induces secondary metabolite production in Streptomyces by co-culturing them with mycolic acid-containing bacteria. As a result of combined-culture screening of our terrestrial Streptomyces collection using UV-HPLC, one of the tested strains, Streptomyces sp. TAKO-2, produced two known aromatic polyketides, julichrome Q 6 (1) and julichrome Q 8·8 (2), when co-cultured with the mycolic acid-containing bacterium Tsukamurella pulmonis TP-B0596. The structures of 1 and 2 were confirmed by spectroscopic analysis and literature data.
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ChemBioChem 17(15) 1407-1411 2016年6月17日Abstract Natural products have enormous structural diversity, yet little is known about how such diversity is achieved in nature. Here we report the structural diversification of a cyanotoxin—lyngbyatoxin A—and its biosynthetic intermediates by heterologous expression of the Streptomyces‐derived tleABC biosynthetic gene cluster in three different Streptomyces hosts: S. lividans, S. albus, and S. avermitilis. Notably, the isolated lyngbyatoxin derivatives, including four new natural products, were biosynthesized by crosstalk between the heterologous tleABC gene cluster and the endogenous host enzymes. The simple strategy described here has expanded the structural diversity of lyngbyatoxin A and its biosynthetic intermediates, and provides opportunities for investigation of the currently underestimated hidden biosynthetic crosstalk.
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Journal of Natural Products 78(12) 3011-3017 2015年12月1日 筆頭著者
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Bioorganic & Medicinal Chemistry Letters 25(18) 3953-3955 2015年9月 筆頭著者
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Chemistry & Biology 22(7) 898-906 2015年7月
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Organic Letters 17(6) 1501-1504 2015年3月5日 筆頭著者
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The Journal of Antibiotics 68(5) 342-344 2014年10月22日 筆頭著者
MISC
33書籍等出版物
4講演・口頭発表等
46-
The 1st A3 foresight symposium on Synthetic Biology -Driven Natural Product Research 2026年4月13日
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2025 The 3rd Taiwan-Japan Bilateral Symposium on Natural Products Biosynthesis 2025年11月13日 招待有り
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2024 The 2nd Taiwan-Japan Bilateral Symposium on Natural Products Biosynthesis 2024年11月15日
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1st Japan-Korea Actinomycetes Symposium 2024年6月17日
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2023 The 1st Taiwan-Japan Bilateral Symposium on Natural Products Biosynthesis 2023年12月25日 招待有り
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2018 ASP Annual Meeting 2018年7月23日
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2nd International Conference on Natural Product Discovery and Development in the Genomic Era 2018年1月22日
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18th International Symposium on the Biology of Actinomycetes 2017年5月24日
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American Society of Pharmacognosy 2015 Annual Meeting 2015年7月26日
教育業績(担当経験のある科目)
5-
2023年4月 - 現在生命科学実験1 生2年 (学習院大学)
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2023年4月 - 現在生命科学実験3 生3年 (学習院大学)
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2023年4月 - 現在基礎科学実験2(生命科学) 化1年 (学習院大学)
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2023年4月 - 現在基礎科学実験2(生命科学) 物1年 (学習院大学)
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2023年4月 - 現在基礎科学実験1(生命科学) 生1年 (学習院大学)
共同研究・競争的資金等の研究課題
7-
日本学術振興会 科学研究費助成事業 2025年4月 - 2028年3月
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日本学術振興会 科学研究費助成事業 2025年4月 - 2027年3月
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公益財団法人 発酵研究所 若手研究者助成 2025年4月 - 2027年3月
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日本学術振興会 科学研究費助成事業 2023年4月 - 2025年3月
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日本学術振興会 科学研究費助成事業 研究活動スタート支援 2022年8月 - 2024年3月