至今,GenScript的服务及产品已被Cell, Nature, Science, PNAS等1300多家生物医药类杂志引用近万次,处于行业领先水平。NIH、哈佛、耶鲁、斯坦福、普林斯顿、杜克大学等约400家全球著名机构使用GenScript的基因合成、多肽服务、抗体服务和蛋白服务等成功地发表科研成果,再次证明GenScript 有能力帮助业内科学家Make research easy.

Single-Step Replacement of an Unreactive C–H Bond by a C–S Bond Using Polysulfide as the Direct Sulfur Source in the Anaerobic Ergothioneine Biosynthesis

ACS Catal. 2020-07; 
Ronghai Cheng, Lian Wu, Rui Lai, Chao Peng, Nathchar Naowarojna, Weiyao Hu, Xinhao Li, Stephen A. Whelan, Norman Lee, Juan Lopez, Changming Zhao, Youhua Yong, Jiahui Xue, Xuefeng Jiang, Mark W. Grinstaff, Zixin Deng, Jiesheng Chen, Qiang Cui*, Jiahai Zhou*, and Pinghua Liu*
Products/Services Used Details Operation
Gene Synthesis The EanB gene (accession number ACD90218.1) was codon-optimized for Escherichia coli overexpression by Genscript and subcloned into pET28a-(+) vector. Get A Quote

摘要

Abstract Image Ergothioneine, a natural longevity vitamin and antioxidant, is a thiol-histidine derivative. Recently, two types of biosynthetic pathways were reported. In the aerobic ergothioneine biosyntheses, non-heme iron enzymes incorporate a sulfoxide into an sp2 C–H bond from trimethyl-histidine (hercynine) through oxidation reactions. In contrast, in the anaerobic ergothioneine biosynthetic pathway in a green-sulfur bacterium, Chlorobium limicola, a rhodanese domain containing protein (EanB), directly replaces this unreactive hercynine C–H bond with a C–S bond. Herein, we demonstrate that polysulfide (HSSnSR) is the direct sulfur source in EanB catalysis. After identifying EanB’s substrates, X-r... More

关键词

ergothioneine biosynthesis polysulfide C−H bond activation trans-sulfuration crystal structure