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本文引用的文献

1
Engineering Protein Hydrogels Using SpyCatcher-SpyTag Chemistry.利用 SpyCatcher-SpyTag 化学构建蛋白质水凝胶。
Biomacromolecules. 2016 Sep 12;17(9):2812-9. doi: 10.1021/acs.biomac.6b00566. Epub 2016 Aug 17.
2
Programmable polyproteams built using twin peptide superglues.使用双肽超级胶水构建的可编程多蛋白组合。
Proc Natl Acad Sci U S A. 2016 Feb 2;113(5):1202-7. doi: 10.1073/pnas.1519214113. Epub 2016 Jan 19.
3
Secrets of a covalent interaction for biomaterials and biotechnology: SpyTag and SpyCatcher.生物材料与生物技术中共价相互作用的奥秘:SpyTag与SpyCatcher
Curr Opin Chem Biol. 2015 Dec;29:94-9. doi: 10.1016/j.cbpa.2015.10.002. Epub 2015 Oct 30.
4
Enhancing Pharmacokinetics, Tumor Accumulation, and Antitumor Efficacy by Elastin-Like Polypeptide Fusion of Interferon Alpha.弹性蛋白样多肽融合干扰素 α 增强药代动力学、肿瘤蓄积和抗肿瘤疗效。
Adv Mater. 2015 Dec 2;27(45):7320-4. doi: 10.1002/adma.201503440. Epub 2015 Oct 14.
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Structural basis for gene regulation by a B12-dependent photoreceptor.一种依赖维生素B12的光感受器进行基因调控的结构基础。
Nature. 2015 Oct 22;526(7574):536-41. doi: 10.1038/nature14950. Epub 2015 Sep 28.
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The photochemical mechanism of a B12-dependent photoreceptor protein.一种依赖维生素B12的光感受器蛋白的光化学机制。
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Genetically Encoded Spy Peptide Fusion System to Detect Plasma Membrane-Localized Proteins In Vivo.用于在体内检测定位于质膜的蛋白质的基因编码间谍肽融合系统。
Chem Biol. 2015 Aug 20;22(8):1108-21. doi: 10.1016/j.chembiol.2015.06.020. Epub 2015 Jul 23.
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The Transcription Factor CarH Safeguards Use of Adenosylcobalamin as a Light Sensor by Altering the Photolysis Products.转录因子CarH通过改变光解产物来保障将腺苷钴胺用作光传感器。
Biochemistry. 2015 Jun 2;54(21):3231-4. doi: 10.1021/acs.biochem.5b00416. Epub 2015 May 19.
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Engineered catalytic biofilms: Site-specific enzyme immobilization onto E. coli curli nanofibers.工程化催化生物膜:将酶定点固定在大肠杆菌卷曲纳米纤维上。
Biotechnol Bioeng. 2015 Oct;112(10):2016-24. doi: 10.1002/bit.25638. Epub 2015 May 20.
10
A photoreversible protein-patterning approach for guiding stem cell fate in three-dimensional gels.一种光致可逆的蛋白质图案化方法,用于指导三维凝胶中的干细胞命运。
Nat Mater. 2015 May;14(5):523-31. doi: 10.1038/nmat4219. Epub 2015 Feb 23.

用于控制干细胞/蛋白质释放的 B 依赖性光响应蛋白水凝胶。

B-dependent photoresponsive protein hydrogels for controlled stem cell/protein release.

机构信息

Department of Chemical and Biomolecular Engineering, The Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong.

Division of BioMedical Engineering, The Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong.

出版信息

Proc Natl Acad Sci U S A. 2017 Jun 6;114(23):5912-5917. doi: 10.1073/pnas.1621350114. Epub 2017 May 22.

DOI:10.1073/pnas.1621350114
PMID:28533376
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5468657/
Abstract

Thanks to the precise control over their structural and functional properties, genetically engineered protein-based hydrogels have emerged as a promising candidate for biomedical applications. Given the growing demand for creating stimuli-responsive "smart" hydrogels, here we show the synthesis of entirely protein-based photoresponsive hydrogels by covalently polymerizing the adenosylcobalamin (AdoB)-dependent photoreceptor C-terminal adenosylcobalamin binding domain (CarH) proteins using genetically encoded SpyTag-SpyCatcher chemistry under mild physiological conditions. The resulting hydrogel composed of physically self-assembled CarH polymers exhibited a rapid gel-sol transition on light exposure, which enabled the facile release/recovery of 3T3 fibroblasts and human mesenchymal stem cells (hMSCs) from 3D cultures while maintaining their viability. A covalently cross-linked CarH hydrogel was also designed to encapsulate and release bulky globular proteins, such as mCherry, in a light-dependent manner. The direct assembly of stimuli-responsive proteins into hydrogels represents a versatile strategy for designing dynamically tunable materials.

摘要

得益于对其结构和功能特性的精确控制,基因工程蛋白基水凝胶已成为生物医学应用的有前途的候选物。鉴于对创建对刺激响应的“智能”水凝胶的需求不断增长,在这里我们展示了通过使用遗传编码的 SpyTag-SpyCatcher 化学在温和的生理条件下共价聚合依赖于腺苷钴胺素 (AdoB) 的光受体 C 末端腺苷钴胺素结合结构域 (CarH) 蛋白来合成完全基于蛋白质的光响应水凝胶。由物理自组装的 CarH 聚合物组成的所得水凝胶在暴露于光时表现出快速的凝胶-溶胶转变,从而能够轻松地从 3D 培养物中释放/回收 3T3 成纤维细胞和人间充质干细胞 (hMSC),同时保持其活力。还设计了共价交联的 CarH 水凝胶以光依赖性方式包封和释放大的球状蛋白,如 mCherry。将响应性蛋白质直接组装成水凝胶代表了设计动态可调材料的一种多功能策略。