分解代谢抑制
乳糖渗透酶
生物化学
运输机
细菌
甘露糖
化学
通透性
单糖
果糖
葡萄糖转运蛋白
大肠杆菌
促进扩散
周质间隙
膜转运蛋白
生物
细胞生物学
膜
基因
突变体
胰岛素
内分泌学
遗传学
作者
Mei S,Changsheng Xie,Mi H,Chuang Xue,Guo Q,Guotong Du,Li G,Li C,Yue Qu,Mei Xiong,Yixun Jiang,Tianwei Tan,Shang‐Tian Yang,Li Fan
摘要
Abstract As the initial step in carbohydrate catabolism in cells, the substrate-specific transporters via active transport and facilitated diffusion play a decisive role in passage of sugars through the plasma membrane into the cytoplasm. The SecY complex (SecYEG) in bacteria forms a membrane channel responsible for protein translocation. This work demonstrates that weakening the sealability of the SecY channel allowed free diffusion of sugars, including glucose, fructose, mannose, xylose, arabinose, and lactose, into the engineered cells, facilitating its rapid growth on a wide spectrum of monosaccharides and bypassing/reducing stereospecificity, transport saturation, competitive inhibition, and carbon catabolite repression (CCR), which are usually encountered with the specific sugar transporters. The SecY channel is structurally conserved in prokaryotes, thus it may be engineered to serve as a unique and universal transporter for bacteria to passage sugars as demonstrated in Escherichia coli and Clostridium acetobutylicum .
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