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工程化用于磁共振成像的配体稳定水通道蛋白报告基因

Engineering ligand stabilized aquaporin reporters for magnetic resonance imaging.

作者信息

Yun Jason, Baldini Logan, Huang Yimeng, Li Eugene, Li Honghao, Chacko Asish N, Miller Austin D C, Wan Jinyang, Mukherjee Arnab

机构信息

Department of Chemistry, University of California, Santa Barbara, CA 93106, USA.

Department of Chemical Engineering, University of California, Santa Barbara, CA 93106, USA.

出版信息

bioRxiv. 2023 Jun 5:2023.06.02.543364. doi: 10.1101/2023.06.02.543364.

Abstract

Imaging transgene expression in live tissues requires reporters that are detectable with deeply penetrant modalities, such as magnetic resonance imaging (MRI). Here, we show that LSAqp1, a water channel engineered from aquaporin-1, can be used to create background-free, drug-gated, and multiplex images of gene expression using MRI. LSAqp1 is a fusion protein composed of aquaporin-1 and a degradation tag that is sensitive to a cell-permeable ligand, which allows for dynamic small molecule modulation of MRI signals. LSAqp1 improves specificity for imaging gene expression by allowing reporter signals to be conditionally activated and distinguished from the tissue background by difference imaging. In addition, by engineering destabilized aquaporin-1 variants with different ligand requirements, it is possible to image distinct cell types simultaneously. Finally, we expressed LSAqp1 in a tumor model and showed successful in vivo imaging of gene expression without background activity. LSAqp1 provides a conceptually unique approach to accurately measure gene expression in living organisms by combining the physics of water diffusion and biotechnology tools to control protein stability.

摘要

对活组织中的转基因表达进行成像需要能够通过诸如磁共振成像(MRI)等深度穿透性成像方式检测的报告基因。在此,我们表明,LSAqp1(一种由水通道蛋白-1改造而来的水通道)可用于利用MRI创建基因表达的无背景、药物门控和多重图像。LSAqp1是一种融合蛋白,由水通道蛋白-1和对细胞可渗透配体敏感的降解标签组成,这使得MRI信号能够进行动态小分子调节。LSAqp1通过允许报告信号被条件性激活并通过差异成像与组织背景区分开来,提高了基因表达成像的特异性。此外,通过构建具有不同配体需求的不稳定水通道蛋白-1变体,可以同时对不同细胞类型进行成像。最后,我们在肿瘤模型中表达了LSAqp1,并成功地在体内对无背景活性的基因表达进行了成像。LSAqp1通过结合水扩散物理学和控制蛋白质稳定性的生物技术工具,提供了一种在概念上独特的方法来准确测量活生物体中的基因表达。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/07ae/10274688/5111ff37431a/nihpp-2023.06.02.543364v1-f0001.jpg

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