Suppr超能文献

放线菌,一种天然抗生素的无尽来源。

Actinomycetes, an Inexhaustible Source of Naturally Occurring Antibiotics.

作者信息

Takahashi Yōko, Nakashima Takuji

机构信息

Kitasato Institute for Life Sciences, Kitasato University, 5-9-1 Shirokane, Minato-ku, Tokyo 108-8641, Japan.

出版信息

Antibiotics (Basel). 2018 May 24;7(2):45. doi: 10.3390/antibiotics7020045.

Abstract

Global public health faces a desperate situation, due to the lack of effective antibiotics. Coordinated steps need to be taken, worldwide, to rectify this situation and protect the advances in modern medicine made over the last 100 years. Work at Japan's Kitasato Institute has been in the vanguard of many such advances, and work is being proactively tailored to promote the discovery of urgently needed antimicrobials. Efforts are being concentrated on actinomycetes, the proven source of most modern antibiotics. We devised a novel physicochemical screening mechanism, whereby simple physico-chemical properties, in conjunction with related detection methods, such as LC/MS, LC/UV, and polarity, could be used to identify or predict new compounds in a culture broth, simply by comparing results with existing databases. New compounds are isolated, purified, and their structure determined before being tested for any bioactivity. We used lyophilized actinomycete strains from the Kitasato Microbial Library, most more than 35 years old, and found 330 strains were producers of useful bioactive substances. We also tested organisms found in fresh samples collected in the complex environments from around plant roots, as well as from sediments of mangrove forests and oceans, resulting in the discovery of 36 novel compounds from 11 actinomycete strains. A compound, designated iminimycin, containing an iminium ion in the structure was discovered from the culture broth of OS-3601, which had been stored for a long time as a streptomycin-producing strain. This represented the first iminium ion discovery in actinomycetes. Compounds with a cyclopentadecane skeleton containing 5,6-dihydro-4-hydroxyl-2-pyrone ring and tetrahydrofuran ring, designated mangromicins, were isolated from the culture broth of K10-0216 obtained from sediment in a mangrove forest. These structures are extremely unique among natural compounds. From the same culture broth, new steroid compounds, named K10-0216 KA and KB, and other new compounds having a thiazole and a pyridine ring, named pyrizomicin A and B, were discovered. New substances can be found from actinomycetes that have been exhaustively studied. Novel compounds with different skeletons can be found from a single broth of one strain. The sought after new antibiotics will arise from continued exploitation of the actinomycetes, especially rare actinomycetes. Work on new organisms and samples should be augmented by re-examination of known actinomycetes already in storage. New research should also be carried out on the manipulation of culture media, thereby stimulating actinomycete strains to produce novel chemicals. The establishment of wide-ranging international research collaborations will facilitate and expedite the efficient and timely discovery and provision of bioactive compounds to help maintain and promote advances in global public health.

摘要

由于缺乏有效的抗生素,全球公共卫生面临着严峻的形势。需要在全球范围内采取协调一致的措施来纠正这种局面,并保护过去100年来现代医学所取得的进展。日本北里研究所的工作一直处于许多此类进展的前沿,并且正在积极开展工作,以促进急需的抗菌药物的发现。研究工作主要集中在放线菌上,放线菌是大多数现代抗生素已证实的来源。我们设计了一种新颖的物理化学筛选机制,通过该机制,简单的物理化学性质,结合相关的检测方法,如液相色谱/质谱(LC/MS)、液相色谱/紫外(LC/UV)和极性,只需将结果与现有数据库进行比较,就可用于识别或预测培养液中的新化合物。新化合物被分离、纯化并确定其结构,然后再测试其生物活性。我们使用了北里微生物文库中冻干的放线菌菌株,其中大多数菌株已有35年以上的历史,发现有330株菌株能产生有用的生物活性物质。我们还对从植物根际周围复杂环境以及红树林和海洋沉积物中采集的新鲜样本中的微生物进行了测试,从11株放线菌菌株中发现了36种新化合物。从长期作为链霉素生产菌株保存的OS-3601的培养液中发现了一种化合物,命名为亚胺霉素,其结构中含有亚胺离子。这是在放线菌中首次发现亚胺离子。从红树林沉积物中获得的K10-0216的培养液中分离出了具有环十五烷骨架、含有5,6-二氢-4-羟基-2-吡喃酮环和四氢呋喃环的化合物,命名为红树林霉素。这些结构在天然化合物中极为独特。从同一培养液中还发现了新的甾体化合物,命名为K10-0216 KA和KB,以及其他具有噻唑和吡啶环的新化合物,命名为吡唑霉素A和B。可以从已经被深入研究的放线菌中发现新物质。从一个菌株的单一培养液中可以发现具有不同骨架的新化合物。人们所追求的新型抗生素将来自于对放线菌,尤其是稀有放线菌的持续开发利用。对新生物和样本的研究工作应通过重新检查已保存的已知放线菌来加强。还应开展关于培养基调控的新研究,从而刺激放线菌菌株产生新型化学物质。建立广泛的国际研究合作将有助于并加快高效、及时地发现和提供生物活性化合物,以帮助维持和促进全球公共卫生的进步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/820b/6022875/2f4a4fa32711/antibiotics-07-00045-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验