Leipoldt Franziska, Zeyhle Philipp, Kulik Andreas, Kalinowski Jörn, Heide Lutz, Kaysser Leonard
Pharmaceutical Biology, Pharmaceutical Institute, Eberhard Karls University Tübingen, Tübingen, Germany.
German Centre for Infection Research (DZIF), Partner Site Tübingen, Tübingen, Germany.
PLoS One. 2015 Dec 14;10(12):e0143237. doi: 10.1371/journal.pone.0143237. eCollection 2015.
Terpenoids are arguably the largest and most diverse family of natural products, featuring prominently in e.g. signalling, self-defence, UV-protection and electron transfer. Prenyltransferases are essential players in terpenoid and hybrid isoprenoid biosynthesis that install isoprene units on target molecules and thereby often modulate their bioactivity. In our search for new prenyltransferase biocatalysts we focused on the marine-derived Streptomyces sp. CNQ-509, a particularly rich source of meroterpenoid chemistry. Sequencing and analysis of the genome of Streptomyces sp. CNQ-509 revealed seven putative phenol/phenazine-specific ABBA prenyltransferases, and one putative indole-specific ABBA prenyltransferase. To elucidate the substrate specificity of the ABBA prenyltransferases and to learn about their role in secondary metabolism, CnqP1 -CnqP8 were produced in Escherichia coli and incubated with various aromatic and isoprenoid substrates. Five of the eight prenyltransferases displayed enzymatic activity. The efficient conversion of dihydroxynaphthalene derivatives by CnqP3 (encoded by AA958_24325) and the co-location of AA958_24325 with genes characteristic for the biosynthesis of THN (tetrahydroxynaphthalene)-derived natural products indicates that the enzyme is involved in the formation of debromomarinone or other naphthoquinone-derived meroterpenoids. Moreover, CnqP3 showed high flexibility towards a range of aromatic and isoprenoid substrates and thus represents an interesting new tool for biocatalytic applications.
萜类化合物可以说是最大且最多样化的天然产物家族,在例如信号传导、自我防御、紫外线防护和电子转移等方面发挥着重要作用。异戊烯基转移酶是萜类化合物和杂合类异戊二烯生物合成中的关键参与者,它们将异戊二烯单元安装在目标分子上,从而常常调节其生物活性。在我们寻找新的异戊烯基转移酶生物催化剂的过程中,我们聚焦于海洋来源的链霉菌属菌株CNQ-509,它是一个特别丰富的杂萜化学来源。对链霉菌属菌株CNQ-509的基因组进行测序和分析,发现了七种假定的酚/吩嗪特异性ABBA异戊烯基转移酶,以及一种假定的吲哚特异性ABBA异戊烯基转移酶。为了阐明ABBA异戊烯基转移酶的底物特异性,并了解它们在次级代谢中的作用,在大肠杆菌中表达了CnqP1 - CnqP8,并将其与各种芳香族和类异戊二烯底物一起孵育。八种异戊烯基转移酶中有五种显示出酶活性。CnqP3(由AA958_24325编码)对二羟基萘衍生物的高效转化以及AA958_24325与四羟基萘(THN)衍生的天然产物生物合成特征基因的共定位表明,该酶参与了脱溴马瑞诺酮或其他萘醌衍生的杂萜类化合物的形成。此外,CnqP3对一系列芳香族和类异戊二烯底物表现出高度的灵活性,因此代表了一种用于生物催化应用的有趣新工具。