化学
分泌物
共价键
限制
益生菌
氨基酸
计算生物学
生物化学
遗传密码
药物输送
效力
药物发现
药品
细胞生物学
蛋白质工程
结构-活动关系
生物活性
药理学
共价结合
结肠炎
基因工程
血浆蛋白结合
作者
Kaiyi Wang,Yumeng Wu,J. J. Shang,Lingxin Bu,Hu Du,H G He,Rui Wang,Ruixuan Wang,Junyi Mao,Yao Yan,Jun Guan,Rui Wang,Rui Wang,Huixin Luo
摘要
Oral delivery of therapeutic proteins remains a formidable challenge. Although engineered microbes have emerged as promising platforms for localized drug synthesis in the gut, their functional capacity has been restricted to the 20 canonical amino acids, limiting the chemical diversity of biologic payloads. Here, we demonstrate that integrating genetic code expansion (GCE) into bacterial therapy overcomes this fundamental constraint. We engineered the probiotic Escherichia coli Nissle 1917 (EcN) to incorporate the noncanonical amino acid fluorosulfate- l -tyrosine (FSY), enabling in situ secretion of a site-specifically modified covalent anti-IL-23 nanobody exhibiting picomolar binding potency (5.9 pM). Oral administration of this engineered EcN strain, followed by FSY supplementation, significantly ameliorated colitis in a murine model. This approach thereby establishes a versatile and generalizable platform that substantially expands the functional scope and therapeutic potential of live biotherapeutics.
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