2021ACS Chemical BiologyRequires access

Identification of a C-Glycosyltransferase Involved in Medermycin Biosynthesis

Xiaofeng Cai, Takaaki Taguchi, Huili Wang, Megumi Yuki, Megumi Tanaka, Kai Gong, Jinghua Xu, Yiming Zhao, Koji Ichinose, Aiying Li

Open publisher page 12 citations

Abstract

C -Glycosylation in the biosynthesis of bioactive natural products is quite unique, which has not been studied well. Medermycin, as an antitumor agent in the family of pyranonaphthoquinone antibiotics, is featured with unique C -glycosylation. Here, a new C -glycosyltransferase ( C -GT) Med-8 was identified to be essential for the biosynthesis of medermycin, as the first example of C -GT to recognize a rare deoxyaminosugar (angolosamine). med -8 and six genes ( med -14, -15, -16, -17, -18, and -20 located in the medermycin biosynthetic gene cluster) predicted for the biosynthesis of angolosamine were proved to be functional and sufficient for C -glycosylation. A C -glycosylation cassette composed of these seven genes could convert a proposed substrate into a C -glycosylated product. In conclusion, these genes involved in the C -glycosylation of medermycin were functionally identified and biosynthetically engineered, and they provided the possibility of producing new C -glycosylated compounds.

About this research paper

What this paper is about

C -Glycosylation in the biosynthesis of bioactive natural products is quite unique, which has not been studied well. Medermycin, as an antitumor agent in the family of pyranonaphthoquinone antibiotics, is featured with unique C -glycosylation. Here, a new C -glycosyltransferase ( C -GT) Med-8 was identified to be essential for the biosynthesis of medermycin, as the first example of C -GT to recognize a rare deoxyaminosugar (angolosamine). med -8 and six genes ( med -14, -15, -16, -17, -18, and -20 located in the medermycin biosynthetic gene cluster) predicted for the biosynthesis of angolosamine were proved to be functional and sufficient for C -glycosylation. A C -glycosylation cassette composed of these seven genes could convert a proposed substrate into a C -glycosylated product. In conclusion, these genes involved in the C -glycosylation of medermycin were functionally identified and biosynthetically engineered, and they provided the possibility of producing new C -glycosylated compounds.

Why it matters

OpenAlex reports 12 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

C -Glycosylation in the biosynthesis of bioactive natural products is quite unique, which has not been studied well. Medermycin, as an antitumor agent in the family of pyranonaphthoquinone antibiotics, is featured with unique C -glycosylation. Here, a new C -glycosyltransferase ( C -GT) Med-8 was identified to be essential for the biosynthesis of medermycin, as the first example of C -GT to recognize a rare deoxyaminosugar (angolosamine). med -8 and six genes ( med -14, -15, -16, -17, -18, and -20 located in the medermycin biosynthetic gene cluster) predicted for the biosynthesis of angolosamine were proved to be functional and sufficient for C -glycosylation. A C -glycosylation cassette composed of these seven genes could convert a proposed substrate into a C -glycosylated product. In conclusion, these genes involved in the C -glycosylation of medermycin were functionally identified and biosynthetically engineered, and they provided the possibility of producing new C -glycosylated compounds.

Key concepts: Glycosylation, Glycosyltransferase, Biosynthesis, Gene cluster, Gene, Biochemistry, Biology, Natural product

Related papers

Back to paper searchBrowse research topicsOriginal source
Identification of a C-Glycosyltransferase Involved in Medermycin Biosynthesis — Research Paper | ScholarLens