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当前开发放线菌作为新型天然产物来源的方法。

Current approaches to exploit actinomycetes as a source of novel natural products.

机构信息

Fundación MEDINA, Centro de Excelencia en Investigación de Medicamentos Innovadores en Andalucía, Avda Conocimiento 3, Parque Tecnológico Ciencias de la Salud, 18100 Granada, Spain.

出版信息

J Ind Microbiol Biotechnol. 2011 Mar;38(3):375-89. doi: 10.1007/s10295-010-0882-7. Epub 2010 Oct 8.

Abstract

For decades, microbial natural products have been one of the major sources of novel drugs for pharmaceutical companies, and today all evidence suggests that novel molecules with potential therapeutic applications are still waiting to be discovered from these natural sources, especially from actinomycetes. Any appropriate exploitation of the chemical diversity of these microbial sources relies on proper understanding of their biological diversity and other related key factors that maximize the possibility of successful identification of novel molecules. Without doubt, the discovery of platensimycin has shown that microbial natural products can continue to deliver novel scaffolds if appropriate tools are put in place to reveal them in a cost-effective manner. Whereas today innovative technologies involving exploitation of uncultivated environmental diversity, together with chemical biology and in silico approaches, are seeing rapid development in natural products research, maximization of the chances of exploiting chemical diversity from microbial collections is still essential for novel drug discovery. This work provides an overview of the integrated approaches developed at the former Basic Research Center of Merck Sharp and Dohme in Spain to exploit the diversity and biosynthetic potential of actinomycetes, and includes some examples of those that were successfully applied to the discovery of novel antibiotics.

摘要

几十年来,微生物天然产物一直是制药公司新型药物的主要来源之一,如今所有证据都表明,具有潜在治疗应用的新型分子仍有待从这些天然来源中发现,尤其是放线菌。要想充分利用这些微生物资源的化学多样性,就必须正确了解它们的生物多样性和其他相关关键因素,从而最大限度地提高成功鉴定新型分子的可能性。毫无疑问,普那霉素的发现表明,如果采用适当的工具以具有成本效益的方式揭示它们,微生物天然产物仍能不断提供新型骨架。虽然如今涉及开发未培养环境多样性的创新技术,以及化学生物学和计算方法在天然产物研究中正在迅速发展,但为了发现新型药物,最大限度地利用微生物培养物的化学多样性仍然至关重要。这项工作概述了默克雪兰诺西班牙基础研究中心开发的综合方法,以开发放线菌的多样性和生物合成潜力,并包含了一些成功应用于新型抗生素发现的实例。

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