Characterization of Chemical Interactions between Clinical Drugs and the Oral Bacterium, Corynebacterium matruchotii, via Bioactivity-HiTES

IF 3.5 2区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY ACS Chemical Biology Pub Date : 2024-03-21 DOI:10.1021/acschembio.3c00798
Da Yeong Lee, Jonghwan Kim, Gyu Sung Lee, Sehwan Park, Jeongwon Song, Bum Soo Lee, Seoung Rak Lee, Ki Hyun Kim and Chung Sub Kim*, 
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Abstract

In the field of natural product research, the rediscovery of already-known compounds is one of the significant issues hindering new drug development. Recently, an innovative approach called bioactivity-HiTES has been developed to overcome this limitation, and several new bioactive metabolites have been successfully characterized by this method. In this study, we applied bioactivity-HiTES to Corynebacterium matruchotii, the human oral bacterium, with 3120 clinical drugs as potential elicitors. As a result, we identified two cryptic metabolites, methylindole-3-acetate (MIAA) and indole-3-acetic acid (IAA), elicited by imidafenacin, a urinary antispasmodic drug approved by the Japanese Pharmaceuticals and Medical Devices Agency (PMDA). MIAA showed weak antibacterial activity against a pulmonary disease-causing Mycobacterium conceptionense with an IC50 value of 185.7 μM. Unexpectedly, we also found that C. matruchotii metabolized fludarabine phosphate, a USFDA-approved anticancer drug, to 2-fluoroadenine which displayed moderate antibacterial activity against both Bacillus subtilis and Escherichia coli, with IC50 values of 8.9 and 20.1 μM, respectively. Finally, acelarin, a prodrug of the anticancer drug gemcitabine, was found to exhibit unreported antibacterial activity against B. subtilis with an IC50 value of 33.6 μM through the bioactivity-HiTES method as well. These results indicate that bioactivity-HiTES can also be applied to discover biotransformed products in addition to finding cryptic metabolites in microbes.

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通过 Bioactivity-HiTES 表征临床药物与口腔杆菌 Corynebacterium matruchotii 之间的化学相互作用。
在天然产物研究领域,重新发现已知化合物是阻碍新药开发的重要问题之一。最近,一种被称为生物活性-HiTES 的创新方法被开发出来以克服这一限制,并通过这种方法成功鉴定了几种新的生物活性代谢物。在本研究中,我们将生物活性-HiTES 应用于人类口腔细菌 Corynebacterium matruchotii,并将 3120 种临床药物作为潜在的诱导剂。结果,我们发现了两种隐性代谢物,即甲基吲哚-3-乙酸酯(MIAA)和吲哚-3-乙酸(IAA),它们是由日本药品和医疗器械管理局(PMDA)批准的一种解痉药物咪达那新激发的。MIAA 对肺部致病分枝杆菌的抗菌活性较弱,IC50 值为 185.7 μM。意想不到的是,我们还发现 C. matruchotii 还能将美国食品与药物管理局批准的抗癌药物磷酸氟达拉滨代谢为 2-氟腺嘌呤,后者对枯草杆菌和大肠杆菌具有中等抗菌活性,IC50 值分别为 8.9 和 20.1 μM。最后,通过生物活性-HiTES 方法,还发现抗癌药物吉西他滨的原药 acelarin 对枯草杆菌具有未报道的抗菌活性,IC50 值为 33.6 μM。这些结果表明,生物活性-HiTES 除了用于发现微生物中的隐性代谢产物外,还可用于发现生物转化产物。
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来源期刊
ACS Chemical Biology
ACS Chemical Biology 生物-生化与分子生物学
CiteScore
7.50
自引率
5.00%
发文量
353
审稿时长
3.3 months
期刊介绍: ACS Chemical Biology provides an international forum for the rapid communication of research that broadly embraces the interface between chemistry and biology. The journal also serves as a forum to facilitate the communication between biologists and chemists that will translate into new research opportunities and discoveries. Results will be published in which molecular reasoning has been used to probe questions through in vitro investigations, cell biological methods, or organismic studies. We welcome mechanistic studies on proteins, nucleic acids, sugars, lipids, and nonbiological polymers. The journal serves a large scientific community, exploring cellular function from both chemical and biological perspectives. It is understood that submitted work is based upon original results and has not been published previously.
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