Department of Genetics and Biotechnology, Ivan Franko National University of Lviv, Hrushevskoho St. 4, Rm. 102, Lviv, 79005, Ukraine.
Technology Platform Genomics, CeBiTec, Bielefeld University, Universitätsstraße 25, 33615, Bielefeld, Germany.
Appl Microbiol Biotechnol. 2018 Oct;102(19):8419-8428. doi: 10.1007/s00253-018-9249-1. Epub 2018 Jul 28.
Streptomyces cyanogenus S136 is the only known producer of landomycin A (LaA), one of the largest glycosylated angucycline antibiotics possessing strong antiproliferative properties. There is rising interest in elucidation of mechanisms of action of landomycins, which, in turn, requires access to large quantities of the pure compounds. Overproduction of LaA has been achieved in the past through manipulation of cluster-situated regulatory genes. However, other components of the LaA biosynthetic regulatory network remain unknown. To fill this gap, we elucidated the contribution of AdpA family pleiotropic regulators in landomycin production via expression of adpA genes of different origins in S. cyanogenus S136. Overexpression of the native S. cyanogenus S136 adpA ortholog had no effect on landomycin titers. In the same time, expression of several heterologous adpA genes led to significantly increased landomycin production under different cultivation conditions. Hence, heterologous adpA genes are a useful tool to enhance or activate landomycin production by S. cyanogenus. Our ongoing research effort is focused on identification of mutations that render S. cyanogenus AdpA nonfunctional.
链霉菌 S136 是唯一已知的兰地霉素 A(LaA)的生产者,LaA 是具有强大抗增殖特性的最大的糖基化安卡环抗生素之一。人们对阐明兰地霉素的作用机制越来越感兴趣,而这反过来又需要获得大量的纯化合物。过去,通过操纵簇定位的调节基因已经实现了 LaA 的过量生产。然而,LaA 生物合成调节网络的其他成分仍然未知。为了填补这一空白,我们通过在链霉菌 S136 中表达不同来源的 adpA 基因,阐明了 AdpA 家族多效调节因子在兰地霉素生产中的作用。天然链霉菌 S136 adpA 同源物的过表达对兰地霉素效价没有影响。与此同时,在不同的培养条件下,表达几种异源 adpA 基因导致兰地霉素产量显著增加。因此,异源 adpA 基因是增强或激活链霉菌 S136 生产兰地霉素的有用工具。我们正在进行的研究工作集中在鉴定使链霉菌 AdpA 失去功能的突变上。