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丁烯内酯型信号分子在链霉菌菌株中的罕见分布及其作为罗氏链霉菌7434AN4中次级代谢产物产生诱导因子的功能重要性。

Rare distribution of butenolide-type signaling molecules among Streptomyces strains and functional importance as inducing factors for secondary metabolite production in Streptomyces rochei 7434AN4.

作者信息

Hirata Asahi, Sumiyoshi Miho, Fujita Hazuki, Akimoto Momoko, Padayao Mary Hannah Rose A, Eguchi Yuto, Matsuura Maki, Otsuka Miyuki, Inada Kuninobu, Teshima Aiko, Arakawa Kenji

机构信息

Program of Biotechnology, Graduate School of Integrated Sciences for Life, Hiroshima University, Hiroshima, Japan.

Hiroshima Research Center for Healthy Aging (HiHA), Hiroshima University, Hiroshima, Japan.

出版信息

J Antibiot (Tokyo). 2025 Jun 12. doi: 10.1038/s41429-025-00840-9.

DOI:10.1038/s41429-025-00840-9
PMID:40506574
Abstract

Streptomyces rochei 7434AN4 produces two structurally unrelated polyketide antibiotics, lankacidin (LC) and lankamycin (LM), and their biosynthesis is tightly controlled by 2,3-disubstituted butenolide-type signaling molecules SRB1 and SRB2. We here investigated the distribution of 2,3-disubstituted butenolides (SRB-type butenolides) among randomly selected 122 Streptomyces strains using two approaches; (1) feeding of their culture extracts into an srrX-deficient strain KA20 of S. rochei, and (2) co-fermentation with strain KA20. All the randomly selected donor strains, except for Streptomyces cellostaticus (a LC and LM producer), failed to restore LC and LM production in strain KA20. These findings strongly revealed the rare distribution of SRB-type butenolide molecules in Streptomyces species. One of the SRB-type butenolide, SAB1, an inducing molecule for nikkomycin production in Streptomyces ansochromogenes, was unable to restore antibiotic production in strain KA20 even at 1 mM concentration. Furthermore, we noticed the accumulation of 4-dehydroxy-SRB1 as a novel compound when SRB1 was fed into strain KA20. Purified 4-dehydroxy-SRB1 has no inducing activity of antibiotic production in strain KA20 even at 1000-fold higher concentration (50 µM) against a minimum inducing concentration of natural SRB1 (40 nM). These findings suggested the importance of the length of a hydrocarbon chain attached at C-2 and a hydroxyl group at C-4 for inducing activity in S. rochei.

摘要

罗氏链霉菌7434AN4产生两种结构不相关的聚酮类抗生素,兰卡杀菌素(LC)和兰卡霉素(LM),它们的生物合成受到2,3 - 二取代丁烯内酯型信号分子SRB1和SRB2的严格控制。我们在此使用两种方法研究了2,3 - 二取代丁烯内酯(SRB型丁烯内酯)在随机选择的122株链霉菌菌株中的分布情况;(1)将它们的培养提取物加入罗氏链霉菌的srrX缺陷型菌株KA20中,以及(2)与菌株KA20共同发酵。除了制癌链霉菌(一种LC和LM生产者)外,所有随机选择的供体菌株都未能恢复菌株KA20中LC和LM的产生。这些发现有力地揭示了SRB型丁烯内酯分子在链霉菌物种中的罕见分布。SRB型丁烯内酯之一,SAB1,一种产色链霉菌中尼可霉素生产的诱导分子,即使在1 mM浓度下也无法恢复菌株KA20中的抗生素生产。此外,当将SRB1加入菌株KA20时,我们注意到一种新化合物4 - 脱氢SRB1的积累。纯化的4 - 脱氢SRB1即使在比天然SRB1的最低诱导浓度(40 nM)高1000倍(50 μM)的浓度下,对菌株KA20中的抗生素生产也没有诱导活性。这些发现表明,在C - 2处连接的烃链长度和C - 4处的羟基对于罗氏链霉菌中的诱导活性很重要。

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本文引用的文献

1
Accumulation of lankamycin derivative with a branched-chain sugar from a blocked mutant of chalcose biosynthesis in Streptomyces rochei 7434AN4.从罗氏链霉菌7434AN4中参与壳寡糖生物合成的受阻突变体中积累带有支链糖的兰卡霉素衍生物。
Bioorg Med Chem Lett. 2023 Jan 15;80:129125. doi: 10.1016/j.bmcl.2023.129125. Epub 2023 Jan 5.
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Bioinspired computational design of lankacidin derivatives for improvement in antitumor activity.受生物启发的兰克西丁衍生物的计算设计,以提高抗肿瘤活性。
Future Med Chem. 2022 Oct;14(19):1349-1360. doi: 10.4155/fmc-2022-0134. Epub 2022 Sep 8.
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Three 4-monosubstituted butyrolactones from a regulatory gene mutant of Streptomyces rochei 7434AN4.
链霉菌 7434AN4 调控基因突变株中三种 4-单取代丁内酯的分离。
J Biosci Bioeng. 2022 Apr;133(4):329-334. doi: 10.1016/j.jbiosc.2022.01.006. Epub 2022 Feb 3.
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Chemoenzymatic synthesis, computational investigation, and antitumor activity of monocyclic lankacidin derivatives.单环轮枝菌素衍生物的酶促合成、计算研究和抗肿瘤活性。
Bioorg Med Chem. 2022 Jan 1;53:116551. doi: 10.1016/j.bmc.2021.116551. Epub 2021 Dec 5.
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Overexpression of SRO_3163, a homolog of Streptomyces antibiotic regulatory protein, induces the production of novel cyclohexene-containing enamide in Streptomyces rochei.过表达链霉菌抗生素调控蛋白同源物 SRO_3163 诱导罗氏链霉菌产生新型含环己烯的烯酰胺。
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6
Substrate specificity of two cytochrome P450 monooxygenases involved in lankamycin biosynthesis.参与兰卡霉素生物合成的两种细胞色素 P450 单加氧酶的底物特异性。
Biosci Biotechnol Biochem. 2021 Jan 7;85(1):115-125. doi: 10.1093/bbb/zbaa063.
7
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Biomolecules. 2020 Aug 25;10(9):1237. doi: 10.3390/biom10091237.
8
SrrB, a Pseudo-Receptor Protein, Acts as a Negative Regulator for Lankacidin and Lankamycin Production in .SrrB是一种假受体蛋白,在……中作为兰卡杀菌素和兰卡霉素产生的负调控因子发挥作用。
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