聚酮
生物
基因簇
基因
计算生物学
机制(生物学)
系统发育树
遗传学
生物合成
认识论
哲学
作者
Lihan Zhang,Takuya Hashimoto,Bin Qin,Junko Hashimoto,Ikuko Kozone,Teppei Kawahara,Masahiro Okada,Takayoshi Awakawa,Takuya Ito,Yoshinori Asakawa,Masaaki Ueki,Shunji Takahashi,Hiroyuki Osada,Toshiyuki Wakimoto,Haruo Ikeda,Kazuo Shin‐ya,Ikuro Abe
标识
DOI:10.1002/anie.201611371
摘要
Abstract Polyketides form many clinically valuable compounds. However, manipulation of their biosynthesis remains highly challenging. An understanding of gene cluster evolution provides a rationale for reprogramming of the biosynthetic machinery. Herein, we report characterization of giant modular polyketide synthases (PKSs) responsible for the production of aminopolyol polyketides. Heterologous expression of over 150 kbp polyketide gene clusters successfully afforded their products, whose stereochemistry was established by taking advantage of bioinformatic analysis. Furthermore, phylogenetic analysis of highly homologous but functionally diverse domains from the giant PKSs demonstrated the evolutionary mechanism for structural diversification of polyketides. The gene clusters characterized herein, together with their evolutionary insights, are promising genetic building blocks for de novo production of unnatural polyketides.
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