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天然聚酮-异戊二烯类杂合化合物呋喃喹诺菌素A的生物合成:基因簇的鉴定与异源表达

Biosynthesis of a natural polyketide-isoprenoid hybrid compound, furaquinocin A: identification and heterologous expression of the gene cluster.

作者信息

Kawasaki Takashi, Hayashi Yutaka, Kuzuyama Tomohisa, Furihata Kazuo, Itoh Nobuya, Seto Haruo, Dairi Tohru

机构信息

Biotechnology Research Center, Toyama Prefectural University, Toyama 939-0398, Japan.

出版信息

J Bacteriol. 2006 Feb;188(4):1236-44. doi: 10.1128/JB.188.4.1236-1244.2006.

Abstract

Furaquinocin (FQ) A, produced by Streptomyces sp. strain KO-3988, is a natural polyketide-isoprenoid hybrid compound that exhibits a potent antitumor activity. As a first step toward understanding the biosynthetic machinery of this unique and pharmaceutically useful compound, we have cloned an FQ A biosynthetic gene cluster by taking advantage of the fact that an isoprenoid biosynthetic gene cluster generally exists in flanking regions of the mevalonate (MV) pathway gene cluster in actinomycetes. Interestingly, Streptomyces sp. strain KO-3988 was the first example of a microorganism equipped with two distinct mevalonate pathway gene clusters. We were able to localize a 25-kb DNA region that harbored FQ A biosynthetic genes (fur genes) in both the upstream and downstream regions of one of the MV pathway gene clusters (MV2) by using heterologous expression in Streptomyces lividans TK23. This was the first example of a gene cluster responsible for the biosynthesis of a polyketide-isoprenoid hybrid compound. We have also confirmed that four genes responsible for viguiepinol [3-hydroxypimara-9(11),15-diene] biosynthesis exist in the upstream region of the other MV pathway gene cluster (MV1), which had previously been cloned from strain KO-3988. This was the first example of prokaryotic enzymes with these biosynthetic functions. By phylogenetic analysis, these two MV pathway clusters were identified as probably being independently distributed in strain KO-3988 (orthologs), rather than one cluster being generated by the duplication of the other cluster (paralogs).

摘要

由链霉菌属KO - 3988菌株产生的呋喃喹诺菌素(FQ)A是一种天然的聚酮化合物 - 类异戊二烯杂合化合物,具有强大的抗肿瘤活性。作为了解这种独特且具有药学用途化合物生物合成机制的第一步,我们利用放线菌中甲羟戊酸(MV)途径基因簇的侧翼区域通常存在类异戊二烯生物合成基因簇这一事实,克隆了一个FQ A生物合成基因簇。有趣的是,链霉菌属KO - 3988菌株是配备两个不同甲羟戊酸途径基因簇的微生物的首个实例。通过在变铅青链霉菌TK23中进行异源表达,我们能够在其中一个MV途径基因簇(MV2)的上游和下游区域定位一个包含FQ A生物合成基因(fur基因)的25 kb DNA区域。这是负责聚酮化合物 - 类异戊二烯杂合化合物生物合成的基因簇的首个实例。我们还证实,负责viguiepinol [3 - 羟基海松 - 9(11),15 - 二烯]生物合成的四个基因存在于另一个MV途径基因簇(MV1)的上游区域,该基因簇先前已从KO - 3988菌株中克隆出来。这是具有这些生物合成功能的原核酶的首个实例。通过系统发育分析,这两个MV途径基因簇被确定可能在KO - 3988菌株中独立分布(直系同源物),而不是一个基因簇由另一个基因簇的复制产生(旁系同源物)。

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