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通过生活方式实现蛋白质活性化学遗传控制的咖啡因操作合成模块

Caffeine-Operated Synthetic Modules for Chemogenetic Control of Protein Activities by Life Style.

作者信息

Wang Tianlu, He Lian, Jing Ji, Lan Tien-Hung, Hong Tingting, Wang Fen, Huang Yun, Ma Guolin, Zhou Yubin

机构信息

Center for Translational Cancer Research Institute of Biosciences and Technology Texas A&M University Houston TX 77030 USA.

Center for Epigenetics and Disease Prevention Institute of Biosciences and Technology Texas A&M University Houston TX 77030 USA.

出版信息

Adv Sci (Weinh). 2020 Dec 13;8(3):2002148. doi: 10.1002/advs.202002148. eCollection 2021 Feb.

Abstract

A genetically encoded caffeine-operated synthetic module (COSMO) is introduced herein as a robust chemically induced dimerization (CID) system. COSMO enables chemogenetic manipulation of biological processes by caffeine and its metabolites, as well as caffeinated beverages, including coffee, tea, soda, and energy drinks. This CID tool, evolved from an anti-caffeine nanobody via cell-based high-throughput screening, permits caffeine-inducible gating of calcium channels, tumor killing via necroptosis, growth factors-independent activation of tyrosine receptor kinase signaling, and enhancement of nanobody-mediated antigen recognition for the severe acute respiratory distress coronavirus 2 (SARS-CoV-2) spike protein. Further rationalized engineering of COSMO leads to 34-217-fold enhancement in caffeine sensitivity (EC = 16.9 nanomolar), which makes it among the most potent CID systems like the FK506 binding protein (FKBP)-FKBP rapamycin binding domain (FRB)-rapamycin complex. Furthermore, bivalent COSMO (biCOMSO) connected with a long linker favors intramolecular dimerization and acts as a versatile precision switch when inserted in host proteins to achieve tailored function. Given the modularity and high transferability of COMSO and biCOSMO, these chemical biology tools are anticipated to greatly accelerate the development of therapeutic cells and biologics that can be switched on and off by caffeinated beverages commonly consumed in the daily life.

摘要

本文介绍了一种基因编码的咖啡因操作合成模块(COSMO),它是一种强大的化学诱导二聚化(CID)系统。COSMO能够通过咖啡因及其代谢物以及含咖啡因的饮料(包括咖啡、茶、苏打水和能量饮料)对生物过程进行化学遗传学操作。这种CID工具是通过基于细胞的高通量筛选从抗咖啡因纳米抗体进化而来的,它允许咖啡因诱导钙通道的门控、通过坏死性凋亡杀死肿瘤、酪氨酸受体激酶信号的生长因子非依赖性激活以及增强纳米抗体介导的对严重急性呼吸综合征冠状病毒2(SARS-CoV-2)刺突蛋白的抗原识别。对COSMO进行进一步合理的工程改造可使咖啡因敏感性提高34至217倍(EC = 16.9纳摩尔),这使其成为最有效的CID系统之一,类似于FK506结合蛋白(FKBP)-FKBP雷帕霉素结合结构域(FRB)-雷帕霉素复合物。此外,与长连接子相连的二价COSMO(biCOMSO)有利于分子内二聚化,并在插入宿主蛋白中以实现定制功能时充当通用的精确开关。鉴于COSMO和biCOSMO的模块化和高转移性,预计这些化学生物学工具将大大加速可通过日常生活中常见的含咖啡因饮料进行开关控制的治疗性细胞和生物制品的开发。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a2d5/7856909/1b6a200fc97d/ADVS-8-2002148-g001.jpg

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