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Targeted and Logical Discovery of Piperazic Acid-Bearing Natural Products Based on Genomic and Spectroscopic Signatures

Title
Targeted and Logical Discovery of Piperazic Acid-Bearing Natural Products Based on Genomic and Spectroscopic Signatures
Authors
Shin, DanielByun, Woong SubKang, SangwookKang, IlnamBae, Eun SeoAn, Joon SooIm, Ji HyeonPark, JiyoonKim, EunjiKo, KeebeomHwang, SunghoonLee, HonghuiKwon, YunKo, Yoon-JooHong, SuckchangNam, Sang-JipKim, Seung BumFenical, WilliamYoon, Yeo JoonCho, Jang-CheonLee, Sang KookOh, Dong-Chan
Ewha Authors
남상집
SCOPUS Author ID
남상집scopus
Issue Date
2023
Journal Title
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
ISSN
0002-7863JCR Link

1520-5126JCR Link
Citation
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY vol. 145, no. 36, pp. 19676 - 19690
Publisher
AMER CHEMICAL SOC
Indexed
SCIE; SCOPUS WOS
Document Type
Article
Abstract
A targeted and logical discovery method was devised for natural products containing piperazic acid (Piz), which is biosynthesized from ornithine by L-ornithine N- hydroxylase (KtzI) and N-N bond formation enzyme (KtzT). Genomic signature-based screening of a bacterial DNA library (2020 strains) using polymerase chain reaction (PCR) primers targeting ktzT identified 62 strains (3.1%). The PCR amplicons of KtzT-encoding genes were phylogenetically analyzed to classify the 23 clades into two monophyletic groups, I and II. Cultivating hit strains in media supplemented with (NH4Cl)-N-15 and applying H-1-N-15 heteronuclear multiple bond correlation (HMBC) along with H-1-N-15 heteronuclear single quantum coherence (HSQC) and H-1-N-15 HSQC-total correlation spectroscopy (HSQCTOCSY) NMR experiments detected the spectroscopic signatures of Piz and modified Piz. Chemical investigation of the hit strains prioritized by genomic and spectroscopic signatures led to the identification of a new azinothricin congener, polyoxyperuin B seco acid (1), previously reported chloptosin (2) in group I, depsidomycin D (3) incorporating two dehydropiperazic acids (Dpz), and lenziamides A and B (4 and 5), structurally novel 31-membered cyclic decapeptides in group II. By consolidating the phylogenetic and chemical analyses, clade-structure relationships were elucidated for 19 of the 23 clades. Lenziamide A (4) inhibited STAT3 activation and induced G(2)/M cell cycle arrest, apoptotic cell death, and tumor growth suppression in human colorectal cancer cells. Moreover, lenziamide A (4) resensitized 5-fluorouracil (5-FU) activity in both in vitro cell cultures and the in vivo 5-FU-resistant tumor xenograft mouse model. This work demonstrates that the genomic and spectroscopic signature-based searches provide an efficient and general strategy for new bioactive natural products containing specific structural motifs.
DOI
10.1021/jacs.3c04699
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자연과학대학 > 화학·나노과학전공 > Journal papers
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